7YCX

The structure of INTAC-PEC complex


Protein Family Annotation Pfam Database Homepage

ChainsAccessionNameDescriptionCommentsSource
PF12432Protein of unknown function (DUF3677) (DUF3677)Protein of unknown function (DUF3677)- Family
C [auth D]PF13646HEAT repeats (HEAT_2)HEAT repeats- Repeat
H [auth I]PF21382Integrator IntS9, C-terminal domain (IntS9_C)Integrator IntS9, C-terminal domainIntS9 is a component of integrator complex (INT) which is involved in the small nuclear RNAs (snRNA) U1 and U2 transcription and in their 3'-box-dependent processing. This is the C-terminal domain of IntS9 which interacts with the C-terminal of IntS1 ...IntS9 is a component of integrator complex (INT) which is involved in the small nuclear RNAs (snRNA) U1 and U2 transcription and in their 3'-box-dependent processing. This is the C-terminal domain of IntS9 which interacts with the C-terminal of IntS11 (responsible for endonuclease activity of INT), a crucial interaction for the role of INT in snRNA 3'-end processing [1,2].
Domain
H [auth I]PF16661Metallo-beta-lactamase superfamily domain (Lactamase_B_6)Metallo-beta-lactamase superfamily domainThis family is part of the metallo-beta-lactamase superfamily.Domain
H [auth I]PF10996Beta-Casp domain (Beta-Casp)Beta-Casp domainThe beta-CASP domain is found C terminal to the beta-lactamase domain in pre-mRNA 3'-end-processing endonuclease. The active site of this enzyme is located at the interface of these two domains [1].Domain
I [auth K]PF21386Integrator IntS11, C-terminal domain (IntS11_C)Integrator IntS11, C-terminal domainIntS11 is the catalytic component of integrator complex (INT), which is involved in the small nuclear RNAs (snRNA) U1 and U2 transcription and in their 3'-box-dependent processing. This is the C-terminal domain of IntS11 which interacts with the C-te ...IntS11 is the catalytic component of integrator complex (INT), which is involved in the small nuclear RNAs (snRNA) U1 and U2 transcription and in their 3'-box-dependent processing. This is the C-terminal domain of IntS11 which interacts with the C-terminal of IntS9 (Pfam:PF21382), which is a crucial interaction for the role of INT in snRNA 3'-end processing [1,2]. IntS11 is responsible of the endonuclease activity of INT [1-3].
Domain
I [auth K]PF07521Zn-dependent metallo-hydrolase RNA specificity domain (RMMBL)Zn-dependent metallo-hydrolase RNA specificity domain- Motif
I [auth K]PF16661Metallo-beta-lactamase superfamily domain (Lactamase_B_6)Metallo-beta-lactamase superfamily domainThis family is part of the metallo-beta-lactamase superfamily.Domain
I [auth K]PF10996Beta-Casp domain (Beta-Casp)Beta-Casp domainThe beta-CASP domain is found C terminal to the beta-lactamase domain in pre-mRNA 3'-end-processing endonuclease. The active site of this enzyme is located at the interface of these two domains [1].Domain
L [auth Q]PF00149Calcineurin-like phosphoesterase (Metallophos)Calcineurin-like phosphoesteraseThis family includes a diverse range of phosphoesterases [1], including protein phosphoserine phosphatases, nucleotidases, sphingomyelin phosphodiesterases and 2'-3' cAMP phosphodiesterases as well as nucleases such as bacterial SbcD Swiss:P13457 or ...This family includes a diverse range of phosphoesterases [1], including protein phosphoserine phosphatases, nucleotidases, sphingomyelin phosphodiesterases and 2'-3' cAMP phosphodiesterases as well as nucleases such as bacterial SbcD Swiss:P13457 or yeast MRE11 Swiss:P32829. The most conserved regions in this superfamily centre around the metal chelating residues.
Domain
N [auth 1]PF00623RNA polymerase Rpb1, domain 2 (RNA_pol_Rpb1_2)RNA polymerase Rpb1, domain 2RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). This domain, domain 2, contains the active site ...RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). This domain, domain 2, contains the active site. The invariant motif -NADFDGD- binds the active site magnesium ion [1,2].
Domain
N [auth 1]PF04990RNA polymerase Rpb1, domain 7 (RNA_pol_Rpb1_7)RNA polymerase Rpb1, domain 7RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). This domain, domain 7, represents a mobile modu ...RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). This domain, domain 7, represents a mobile module of the RNA polymerase. Domain 7 forms a substantial interaction with the lobe domain of Rpb2 (Pfam:PF04561) [1,2].
Domain
N [auth 1]PF05001RNA polymerase Rpb1 C-terminal repeat (RNA_pol_Rpb1_R)RNA polymerase Rpb1 C-terminal repeat- Repeat
N [auth 1]PF05000RNA polymerase Rpb1, domain 4 (RNA_pol_Rpb1_4)RNA polymerase Rpb1, domain 4RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). This domain, domain 4, represents the funnel do ...RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). This domain, domain 4, represents the funnel domain. The funnel contain the binding site for some elongation factors [1,2].
Domain
N [auth 1]PF04983RNA polymerase Rpb1, domain 3 (RNA_pol_Rpb1_3)RNA polymerase Rpb1, domain 3RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). This domain, domain 3, represents the pore doma ...RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). This domain, domain 3, represents the pore domain. The 3' end of RNA is positioned close to this domain. The pore delimited by this domain is thought to act as a channel through which nucleotides enter the active site and/or where the 3' end of the RNA may be extruded during back-tracking [1,2].
Domain
N [auth 1]PF04992RNA polymerase Rpb1, domain 6 (RNA_pol_Rpb1_6)RNA polymerase Rpb1, domain 6RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). This domain, domain 6, represents a mobile modu ...RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). This domain, domain 6, represents a mobile module of the RNA polymerase. Domain 6 forms part of the shelf module [1,2]. This family appears to be specific to the largest subunit of RNA polymerase II.
Domain
N [auth 1]PF04998RNA polymerase Rpb1, domain 5 (RNA_pol_Rpb1_5)RNA polymerase Rpb1, domain 5RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). This domain, domain 5, represents the discontin ...RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). This domain, domain 5, represents the discontinuous cleft domain that is required to from the central cleft or channel where the DNA is bound [1,2].
Domain
N [auth 1]PF04997RNA polymerase Rpb1, domain 1 (RNA_pol_Rpb1_1)RNA polymerase Rpb1, domain 1RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). This domain, domain 1, represents the clamp do ...RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). This domain, domain 1, represents the clamp domain, which a mobile domain involved in positioning the DNA, maintenance of the transcription bubble and positioning of the nascent RNA strand [1,2].
Domain
P [auth 3]PF01193RNA polymerase Rpb3/Rpb11 dimerisation domain (RNA_pol_L)RNA polymerase Rpb3/Rpb11 dimerisation domainThe two eukaryotic subunits Rpb3 and Rpb11 dimerise to from a platform onto which the other subunits of the RNA polymerase assemble (D/L in archaea). The prokaryotic equivalent of the Rpb3/Rpb11 platform is the alpha-alpha dimer. The dimerisation do ...The two eukaryotic subunits Rpb3 and Rpb11 dimerise to from a platform onto which the other subunits of the RNA polymerase assemble (D/L in archaea). The prokaryotic equivalent of the Rpb3/Rpb11 platform is the alpha-alpha dimer. The dimerisation domain of the alpha subunit/Rpb3 is interrupted by an insert domain (Pfam:PF01000). Some of the alpha subunits also contain iron-sulphur binding domains (Pfam:PF00037). Rpb11 is found as a continuous domain. Members of this family include: alpha subunit from eubacteria, alpha subunits from chloroplasts, Rpb3 subunits from eukaryotes, Rpb11 subunits from eukaryotes, RpoD subunits from archaeal spp, and RpoL subunits from archaeal spp.
Domain
P [auth 3]PF01000RNA polymerase Rpb3/RpoA insert domain (RNA_pol_A_bac)RNA polymerase Rpb3/RpoA insert domainMembers of this family include: alpha subunit from eubacteria alpha subunits from chloroplasts Rpb3 subunits from eukaryotes RpoD subunits from archaealDomain
S [auth 6]PF03870RNA polymerase Rpb8 (RNA_pol_Rpb8)RNA polymerase Rpb8- Family
U [auth 8]PF01194RNA polymerases N / 8 kDa subunit (RNA_pol_N)RNA polymerases N / 8 kDa subunit- Domain
V [auth 9]PF01193RNA polymerase Rpb3/Rpb11 dimerisation domain (RNA_pol_L)RNA polymerase Rpb3/Rpb11 dimerisation domainThe two eukaryotic subunits Rpb3 and Rpb11 dimerise to from a platform onto which the other subunits of the RNA polymerase assemble (D/L in archaea). The prokaryotic equivalent of the Rpb3/Rpb11 platform is the alpha-alpha dimer. The dimerisation do ...The two eukaryotic subunits Rpb3 and Rpb11 dimerise to from a platform onto which the other subunits of the RNA polymerase assemble (D/L in archaea). The prokaryotic equivalent of the Rpb3/Rpb11 platform is the alpha-alpha dimer. The dimerisation domain of the alpha subunit/Rpb3 is interrupted by an insert domain (Pfam:PF01000). Some of the alpha subunits also contain iron-sulphur binding domains (Pfam:PF00037). Rpb11 is found as a continuous domain. Members of this family include: alpha subunit from eubacteria, alpha subunits from chloroplasts, Rpb3 subunits from eukaryotes, Rpb11 subunits from eukaryotes, RpoD subunits from archaeal spp, and RpoL subunits from archaeal spp.
Domain
V [auth 9]PF13656RNA polymerase Rpb3/Rpb11 dimerisation domain (RNA_pol_L_2)RNA polymerase Rpb3/Rpb11 dimerisation domainThe two eukaryotic subunits Rpb3 and Rpb11 dimerise to from a platform onto which the other subunits of the RNA polymerase assemble (D/L in archaea). The prokaryotic equivalent of the Rpb3/Rpb11 platform is the alpha-alpha dimer. The dimerisation do ...The two eukaryotic subunits Rpb3 and Rpb11 dimerise to from a platform onto which the other subunits of the RNA polymerase assemble (D/L in archaea). The prokaryotic equivalent of the Rpb3/Rpb11 platform is the alpha-alpha dimer. The dimerisation domain of the alpha subunit/Rpb3 is interrupted by an insert domain (Pfam:PF01000). Some of the alpha subunits also contain iron-sulphur binding domains (Pfam:PF00037). Rpb11 is found as a continuous domain. Members of this family include: alpha subunit from eubacteria, alpha subunits from chloroplasts, Rpb3 subunits from eukaryotes, Rpb11 subunits from eukaryotes, RpoD subunits from archaeal spp, and RpoL subunits from archaeal spp. Many of the members of this family carry only the N-terminal region of Rpb11.
Domain
W [auth a]PF03604DNA directed RNA polymerase, 7 kDa subunit (DNA_RNApol_7kD)DNA directed RNA polymerase, 7 kDa subunit- Domain
EA [auth i]PF06093Spt4/RpoE2 zinc finger (Spt4)Spt4/RpoE2 zinc fingerThis family consists of several eukaryotic transcription elongation Spt4 proteins as well as archaebacterial RpoE2 [2]. Three transcription-elongation factors Spt4, Spt5, and Spt6 are conserved among eukaryotes and are essential for transcription via ...This family consists of several eukaryotic transcription elongation Spt4 proteins as well as archaebacterial RpoE2 [2]. Three transcription-elongation factors Spt4, Spt5, and Spt6 are conserved among eukaryotes and are essential for transcription via the modulation of chromatin structure. Spt4 and Spt5 are tightly associated in a complex, while the physical association of the Spt4-Spt5 complex with Spt6 is considerably weaker. It has been demonstrated that Spt4, Spt5, and Spt6 play roles in transcription elongation in both yeast and humans including a role in activation by Tat. It is known that Spt4, Spt5, and Spt6 are general transcription-elongation factors, controlling transcription both positively and negatively in important regulatory and developmental roles [1]. RpoE2 is one of 13 subunits in the archaeal RNA polymerase. These proteins contain a C4-type zinc finger, and the structure has been solved in [3]. The structure reveals that Spt4-Spt5 binding is governed by an acid-dipole interaction between Spt5 and Spt4, and the complex binds to and travels along the elongating RNA polymerase. The Spt4-Spt5 complex is likely to be an ancient, core component of the transcription elongation machinery.
Domain
FA [auth j]PF03439Early transcription elongation factor of RNA pol II, NGN section (Spt5-NGN)Early transcription elongation factor of RNA pol II, NGN section- Family
FA [auth j]PF00467KOW motif (KOW)KOW motif- Family
HA [auth l]PF03874RNA polymerase Rpb4 (RNA_pol_Rpb4)RNA polymerase Rpb4- Family
K [auth P]PF02985HEAT repeat (HEAT)HEAT repeat- Repeat
O [auth 2]PF04561RNA polymerase Rpb2, domain 2 (RNA_pol_Rpb2_2)RNA polymerase Rpb2, domain 2RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). Rpb2 is the second largest subunit of the RNA po ...RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). Rpb2 is the second largest subunit of the RNA polymerase. This domain forms one of the two distinctive lobes of the Rpb2 structure. This domain is also known as the lobe domain [1]. DNA has been demonstrated to bind to the concave surface of the lobe domain, and plays a role in maintaining the transcription bubble [1]. Many of the bacterial members contain large insertions within this domain, as region known as dispensable region 1 (DRI).
Domain
O [auth 2]PF04560RNA polymerase Rpb2, domain 7 (RNA_pol_Rpb2_7)RNA polymerase Rpb2, domain 7RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). Rpb2 is the second largest subunit of the RNA p ...RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). Rpb2 is the second largest subunit of the RNA polymerase. This domain comprised of the structural domains anchor and clamp [1]. The clamp region (C-terminal) contains a zinc-binding motif [1]. The clamp region is named due to its interaction with the clamp domain found in Rpb1. The domain also contains a region termed "switch 4". The switches within the polymerase are thought to signal different stages of transcription [1].
Domain
O [auth 2]PF04565RNA polymerase Rpb2, domain 3 (RNA_pol_Rpb2_3)RNA polymerase Rpb2, domain 3RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). Domain 3, s also known as the fork domain and is ...RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). Domain 3, s also known as the fork domain and is proximal to catalytic site [1].
Domain
O [auth 2]PF04566RNA polymerase Rpb2, domain 4 (RNA_pol_Rpb2_4)RNA polymerase Rpb2, domain 4RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). Domain 4, is also known as the external 2 domain ...RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). Domain 4, is also known as the external 2 domain [1].
Domain
O [auth 2]PF04563RNA polymerase beta subunit (RNA_pol_Rpb2_1)RNA polymerase beta subunit- Family
O [auth 2]PF00562RNA polymerase Rpb2, domain 6 (RNA_pol_Rpb2_6)RNA polymerase Rpb2, domain 6RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). This domain represents the hybrid binding domain ...RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). This domain represents the hybrid binding domain and the wall domain [1]. The hybrid binding domain binds the nascent RNA strand / template DNA strand in the Pol II transcription elongation complex. This domain contains the important structural motifs, switch 3 and the flap loop and binds an active site metal ion[1]. This domain is also involved in binding to Rpb1 and Rpb3 [1]. Many of the bacterial members contain large insertions within this domain, as region known as dispensable region 2 (DRII).
Domain
O [auth 2]PF04567RNA polymerase Rpb2, domain 5 (RNA_pol_Rpb2_5)RNA polymerase Rpb2, domain 5RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). Domain 5, is also known as the external 2 domain ...RNA polymerases catalyse the DNA dependent polymerisation of RNA. Prokaryotes contain a single RNA polymerase compared to three in eukaryotes (not including mitochondrial. and chloroplast polymerases). Domain 5, is also known as the external 2 domain [1].
Domain
Q [auth 4]PF01191RNA polymerase Rpb5, C-terminal domain (RNA_pol_Rpb5_C)RNA polymerase Rpb5, C-terminal domainThe assembly domain of Rpb5 [1]. The archaeal equivalent to this domain is subunit H. Subunit H lacks the N-terminal domain.Domain
Q [auth 4]PF03871RNA polymerase Rpb5, N-terminal domain (RNA_pol_Rpb5_N)RNA polymerase Rpb5, N-terminal domainRpb5 has a bipartite structure which includes a eukaryote-specific N-terminal domain and a C-terminal domain resembling the archaeal RNAP subunit H [1,2]. The N-terminal domain is involved in DNA binding and is part of the jaw module in the RNA p ...Rpb5 has a bipartite structure which includes a eukaryote-specific N-terminal domain and a C-terminal domain resembling the archaeal RNAP subunit H [1,2]. The N-terminal domain is involved in DNA binding and is part of the jaw module in the RNA pol II structure [3]. This module is important for positioning the downstream DNA.
Domain
R [auth 5]PF01192RNA polymerase Rpb6 (RNA_pol_Rpb6)RNA polymerase Rpb6- Family
PF14750Integrator complex subunit 2 (INTS2)Integrator complex subunit 2- Family
T [auth 7]PF02150RNA polymerases M/15 Kd subunit (RNA_POL_M_15KD)RNA polymerases M/15 Kd subunit- Domain
T [auth 7]PF01096Transcription factor S-II (TFIIS) (TFIIS_C)Transcription factor S-II (TFIIS)- Domain
CA [auth g]PF04858TH1 protein (TH1)TH1 protein- Family
GA [auth k]PF03876SHS2 domain found in N terminus of Rpb7p/Rpc25p/MJ0397 (SHS2_Rpb7-N)SHS2 domain found in N terminus of Rpb7p/Rpc25p/MJ0397Rpb7 bind to Rpb4 to form a heterodimer. This complex is thought to interact with the nascent RNA strand during RNA polymerase II elongation[1]. This family includes the homologs from RNA polymerase I and III. In RNA polymerase I, Rpa43 is at leas ...Rpb7 bind to Rpb4 to form a heterodimer. This complex is thought to interact with the nascent RNA strand during RNA polymerase II elongation[1]. This family includes the homologs from RNA polymerase I and III. In RNA polymerase I, Rpa43 is at least one of the subunits contacted by the transcription factor TIF-IA [2]. The N terminus of Rpb7p/Rpc25p/MJ0397 has a SHS2 domain that is involved in protein-protein interaction [3].
Domain
GA [auth k]PF00575S1 RNA binding domain (S1)S1 RNA binding domainThe S1 domain occurs in a wide range of RNA associated proteins. It is structurally similar to cold shock protein which binds nucleic acids. The S1 domain has an OB-fold structure.Domain
D [auth E]PF14837Integrator complex subunit 5 N-terminus (INTS5_N)Integrator complex subunit 5 N-terminus- Family
D [auth E]PF14838Integrator complex subunit 5 C-terminus (INTS5_C)Integrator complex subunit 5 C-terminus- Family
E [auth F]PF13519von Willebrand factor type A domain (VWA_2)von Willebrand factor type A domain- Domain

Gene Ontology: Gene Product Annotation Gene Ontology Database Homepage

ChainsPolymerMolecular FunctionBiological ProcessCellular Component
Integrator complex subunit 1-
C [auth D]Integrator complex subunit 4-
F [auth G]Integrator complex subunit 7-
G [auth H]Integrator complex subunit 8-
H [auth I]Integrator complex subunit 9-
I [auth K]Integrator complex subunit 11
J [auth M]Unknown2---
L [auth Q]Serine/threonine-protein phosphatase 2A catalytic subunit alpha isoform
N [auth 1]DNA-directed RNA polymerase II subunit RPB1,DNA-directed RNA polymerase II subunit RPB1, CTD1, CTD2, CTD3, CTD4
P [auth 3]DNA-directed RNA polymerase II subunit RPB3
S [auth 6]DNA-directed RNA polymerases I, II, and III subunit RPABC3
U [auth 8]DNA-directed RNA polymerases I, II, and III subunit RPABC5
V [auth 9]RNA_pol_L_2 domain-containing protein -
W [auth a]RPB12
X [auth b]non-template DNA---
Y [auth c]RNA---
Z [auth d]template DNA---
BA [auth f]Negative elongation factor B
EA [auth i]Transcription elongation factor SPT4
FA [auth j]Transcription elongation factor SPT5
HA [auth l]DNA-directed RNA polymerase II subunit RPB4
K [auth P]Serine/threonine-protein phosphatase 2A 65 kDa regulatory subunit A alpha isoform
M [auth U]Unknown---
O [auth 2]DNA-directed RNA polymerase subunit beta
Q [auth 4]DNA-directed RNA polymerase II subunit E
R [auth 5]DNA-directed RNA polymerase II subunit F
Integrator complex subunit 2-
T [auth 7]DNA-directed RNA polymerase II subunit RPB9
AA [auth e]Negative elongation factor A
CA [auth g]Negative elongation factor C/D
DA [auth h]Negative elongation factor E
GA [auth k]DNA-directed RNA polymerase II subunit RPB7
D [auth E]Integrator complex subunit 5-
E [auth F]Integrator complex subunit 6

InterPro: Protein Family Classification InterPro Database Homepage

ChainsAccessionNameType
IPR016024Armadillo-type foldHomologous Superfamily
IPR022145Integrator complex subunit 1, RPB2-binding domainDomain
IPR038902Integrator complex subunit 1Family
C [auth D]IPR011989Armadillo-like helicalHomologous Superfamily
C [auth D]IPR016024Armadillo-type foldHomologous Superfamily
F [auth G]IPR016024Armadillo-type foldHomologous Superfamily
F [auth G]IPR033060Integrator complex subunit 7Family
G [auth H]IPR011990Tetratricopeptide-like helical domain superfamilyHomologous Superfamily
G [auth H]IPR038751Integrator complex subunit 8Family
H [auth I]IPR027074Integrator complex subunit 9Family
H [auth I]IPR001279Metallo-beta-lactamaseDomain
H [auth I]IPR022712Beta-Casp domainDomain
H [auth I]IPR036866Ribonuclease Z/Hydroxyacylglutathione hydrolase-likeHomologous Superfamily
H [auth I]IPR048660Integrator complex subunit 9-like, C-terminal domainDomain
I [auth K]IPR001279Metallo-beta-lactamaseDomain
I [auth K]IPR022712Beta-Casp domainDomain
I [auth K]IPR041897Integrator complex subunit 11, MBL-foldDomain
I [auth K]IPR048662Integrator complex subunit 11, C-terminal domainDomain
I [auth K]IPR011108Zn-dependent metallo-hydrolase, RNA specificity domainDomain
I [auth K]IPR036866Ribonuclease Z/Hydroxyacylglutathione hydrolase-likeHomologous Superfamily
L [auth Q]IPR047129Serine/Threonine protein phosphatase PP2A-likeFamily
L [auth Q]IPR004843Calcineurin-like phosphoesterase domain, ApaH typeDomain
L [auth Q]IPR029052Metallo-dependent phosphatase-likeHomologous Superfamily
L [auth Q]IPR006186Serine/threonine-specific protein phosphatase/bis(5-nucleosyl)-tetraphosphataseDomain
N [auth 1]IPR007081RNA polymerase Rpb1, domain 5Domain
N [auth 1]IPR045867DNA-directed RNA polymerase, subunit beta-primeFamily
N [auth 1]IPR007075RNA polymerase Rpb1, domain 6Domain
N [auth 1]IPR000684RNA polymerase II, heptapeptide repeat, eukaryoticRepeat
N [auth 1]IPR007083RNA polymerase Rpb1, domain 4Domain
N [auth 1]IPR044893RNA polymerase Rpb1, clamp domain superfamilyHomologous Superfamily
N [auth 1]IPR006592RNA polymerase, N-terminalDomain
N [auth 1]IPR007066RNA polymerase Rpb1, domain 3Domain
N [auth 1]IPR007073RNA polymerase Rpb1, domain 7Domain
N [auth 1]IPR042102RNA polymerase Rpb1, domain 3 superfamilyHomologous Superfamily
N [auth 1]IPR038593RNA polymerase Rpb1, domain 7 superfamilyHomologous Superfamily
N [auth 1]IPR000722RNA polymerase, alpha subunitDomain
N [auth 1]IPR038120RNA polymerase Rpb1, funnel domain superfamilyHomologous Superfamily
N [auth 1]IPR007080RNA polymerase Rpb1, domain 1Domain
P [auth 3]IPR011262DNA-directed RNA polymerase, insert domainDomain
P [auth 3]IPR011263DNA-directed RNA polymerase, RpoA/D/Rpb3-typeDomain
P [auth 3]IPR036643DNA-directed RNA polymerase, insert domain superfamilyHomologous Superfamily
P [auth 3]IPR022842DNA-directed RNA polymerase subunit Rpo3/Rpb3/RPAC1Family
P [auth 3]IPR001514DNA-directed RNA polymerase, 30-40kDa subunit, conserved siteConserved Site
P [auth 3]IPR036603RNA polymerase, RBP11-like subunitHomologous Superfamily
S [auth 6]IPR012340Nucleic acid-binding, OB-foldHomologous Superfamily
S [auth 6]IPR005570DNA-directed RNA polymerases I, II, and III subunit RPABC3Family
U [auth 8]IPR023580RNA polymerase subunit RPB10Homologous Superfamily
U [auth 8]IPR020789RNA polymerases, subunit N, zinc binding siteBinding Site
U [auth 8]IPR000268DNA-directed RNA polymerase subunit RPABC5/Rpb10Family
V [auth 9]IPR022905DNA-directed RNA polymerase subunit Rpo11-likeFamily
V [auth 9]IPR009025DNA-directed RNA polymerase, RBP11-like dimerisation domainDomain
V [auth 9]IPR036603RNA polymerase, RBP11-like subunitHomologous Superfamily
V [auth 9]IPR008193DNA-directed RNA polymerase Rpb11, 13-16kDa subunit, conserved siteConserved Site
V [auth 9]IPR037685RNA polymerase RBP11Family
W [auth a]IPR006591RNA polymerase archaeal subunit P/eukaryotic subunit RPABC4Family
W [auth a]IPR029040RNA polymerase subunit RPABC4/transcription elongation factor Spt4Homologous Superfamily
W [auth a]IPR039747DNA-directed RNA polymerases I, II, and III subunit RPABC4Family
BA [auth f]IPR010405Cofactor of BRCA1Family
EA [auth i]IPR038510Spt4 superfamilyHomologous Superfamily
EA [auth i]IPR009287Transcription initiation Spt4Family
EA [auth i]IPR029040RNA polymerase subunit RPABC4/transcription elongation factor Spt4Homologous Superfamily
EA [auth i]IPR022800Spt4/RpoE2 zinc fingerDomain
FA [auth j]IPR041980Spt5, KOW domain repeat 6Domain
FA [auth j]IPR041976Spt5, KOW domain repeat 3Domain
FA [auth j]IPR039385NGN domain, eukaryoticDomain
FA [auth j]IPR014722Large ribosomal subunit protein uL2, domain 2Homologous Superfamily
FA [auth j]IPR022581Spt5 transcription elongation factor, N-terminalDomain
FA [auth j]IPR024945Spt5 C-terminal domainDomain
FA [auth j]IPR006645NusG-like, N-terminalDomain
FA [auth j]IPR041975Spt5, KOW domain repeat 2Domain
FA [auth j]IPR039659Transcription elongation factor SPT5Family
FA [auth j]IPR036735NusG, N-terminal domain superfamilyHomologous Superfamily
FA [auth j]IPR008991Translation protein SH3-like domain superfamilyHomologous Superfamily
FA [auth j]IPR041973Spt5, KOW domain repeat 1Domain
FA [auth j]IPR005100NGN domainDomain
FA [auth j]IPR041977Spt5, KOW domain repeat 4Domain
FA [auth j]IPR017071Transcription elongation factor Spt5, eukaryoteFamily
FA [auth j]IPR005824KOWDomain
FA [auth j]IPR041978Spt5, KOW domain repeat 5Domain
HA [auth l]IPR005574RNA polymerase subunit Rpb4/RPC9Family
HA [auth l]IPR010997HRDC-like superfamilyHomologous Superfamily
HA [auth l]IPR006590RNA polymerase Rpb4/RPC9, coreDomain
HA [auth l]IPR038324Rpb4/RPC9 superfamilyHomologous Superfamily
HA [auth l]IPR045222DNA-directed RNA polymerase II subunit Rpb4-likeFamily
K [auth P]IPR016024Armadillo-type foldHomologous Superfamily
K [auth P]IPR021133HEAT, type 2Repeat
K [auth P]IPR011989Armadillo-like helicalHomologous Superfamily
K [auth P]IPR000357HEAT repeatRepeat
O [auth 2]IPR007642RNA polymerase Rpb2, domain 2Domain
O [auth 2]IPR015712DNA-directed RNA polymerase, subunit 2Family
O [auth 2]IPR037033DNA-directed RNA polymerase, subunit 2, hybrid-binding domain superfamilyHomologous Superfamily
O [auth 2]IPR037034RNA polymerase Rpb2, domain 2 superfamilyHomologous Superfamily
O [auth 2]IPR007120DNA-directed RNA polymerase, subunit 2, hybrid-binding domainDomain
O [auth 2]IPR007121RNA polymerase, beta subunit, conserved siteConserved Site
O [auth 2]IPR007645RNA polymerase Rpb2, domain 3Domain
O [auth 2]IPR007646RNA polymerase Rpb2, domain 4Domain
O [auth 2]IPR007647RNA polymerase Rpb2, domain 5Domain
O [auth 2]IPR014724RNA polymerase Rpb2, OB-foldHomologous Superfamily
O [auth 2]IPR007644RNA polymerase, beta subunit, protrusionDomain
O [auth 2]IPR007641RNA polymerase Rpb2, domain 7Domain
Q [auth 4]IPR014381DNA-directed RNA polymerase subunit Rpo5/Rpb5Family
Q [auth 4]IPR035913RPB5-like RNA polymerase subunit superfamilyHomologous Superfamily
Q [auth 4]IPR036710RNA polymerase Rpb5, N-terminal domain superfamilyHomologous Superfamily
Q [auth 4]IPR000783RNA polymerase, subunit H/Rpb5 C-terminalDomain
Q [auth 4]IPR020608RNA polymerase, subunit H/Rpb5, conserved siteConserved Site
Q [auth 4]IPR005571RNA polymerase, Rpb5, N-terminalDomain
R [auth 5]IPR020708DNA-directed RNA polymerase, 14-18kDa subunit, conserved siteConserved Site
R [auth 5]IPR036161RPB6/omega subunit-like superfamilyHomologous Superfamily
R [auth 5]IPR028363DNA-directed RNA polymerase, subunit RPB6Family
R [auth 5]IPR006110RNA polymerase, subunit omega/Rpo6/RPB6Family
R [auth 5]IPR006111Archaeal Rpo6/eukaryotic RPB6 RNA polymerase subunitFamily
IPR026236Integrator complex subunit 2, metazoaFamily
IPR029321Integrator complex subunit 2Family
T [auth 7]IPR012164DNA-directed RNA polymerase subunit/transcription factor SFamily
T [auth 7]IPR001222Zinc finger, TFIIS-typeDomain
T [auth 7]IPR034012Pol II subunit B9, C-terminal zinc ribbonDomain
T [auth 7]IPR019761DNA-directed RNA polymerase M, 15kDa subunit, conserved siteConserved Site
T [auth 7]IPR001529DNA-directed RNA polymerase, M/15kDa subunitDomain
AA [auth e]IPR037517Hepatitis delta antigen (HDAg) domainDomain
CA [auth g]IPR006942TH1 proteinFamily
DA [auth h]IPR000504RNA recognition motif domainDomain
DA [auth h]IPR033102Negative elongation factor EFamily
DA [auth h]IPR034637Negative elongation factor E, RNA recognition motifDomain
DA [auth h]IPR012677Nucleotide-binding alpha-beta plait domain superfamilyHomologous Superfamily
DA [auth h]IPR035979RNA-binding domain superfamilyHomologous Superfamily
GA [auth k]IPR036898RNA polymerase Rpb7-like, N-terminal domain superfamilyHomologous Superfamily
GA [auth k]IPR003029S1 domainDomain
GA [auth k]IPR012340Nucleic acid-binding, OB-foldHomologous Superfamily
GA [auth k]IPR045113RNA polymerase subunit Rpb7-likeFamily
GA [auth k]IPR005576RNA polymerase Rpb7-like , N-terminalDomain
D [auth E]IPR040316Integrator complex subunit 5Family
D [auth E]IPR029445Integrator complex subunit 5, N-terminalDomain
D [auth E]IPR029444Integrator complex subunit 5, C-terminalDomain
E [auth F]IPR002035von Willebrand factor, type ADomain
E [auth F]IPR029307INTS6/SAGE1/DDX26B/CT45, C-terminalDomain
E [auth F]IPR036465von Willebrand factor A-like domain superfamilyHomologous Superfamily

Pharos: Disease Associations Pharos Homepage Annotation

ChainsDrug Target  Associated Disease
PharosQ8N201
C [auth D]PharosQ96HW7
F [auth G]PharosQ9NVH2
G [auth H]PharosQ75QN2
H [auth I]PharosQ9NV88
I [auth K]PharosQ5TA45
L [auth Q]PharosP67775
N [auth 1]PharosP24928
BA [auth f]PharosQ8WX92
EA [auth i]PharosP63272
FA [auth j]PharosO00267
K [auth P]PharosP30153
PharosQ9H0H0
AA [auth e]PharosQ9H3P2
CA [auth g]PharosQ8IXH7
DA [auth h]PharosP18615
D [auth E]PharosQ6P9B9
E [auth F]PharosQ9UL03