RNA pol II accessory factor, Cdc73 family, C-terminal; CDC73 is an RNA polymerase II accessory ...
190-344
6.11e-56
RNA pol II accessory factor, Cdc73 family, C-terminal; CDC73 is an RNA polymerase II accessory factor, and forms part of the Paf1 complex that has roles in post-initiation events. More specifically, crystal structure analysis shows the C-terminus to be a Ras-like domain that adopts a fold that is highly similar to GTPases of the Ras superfamily. The canonical nucleotide binding pocket is altered in CDC73, and there is no nucleotide ligand, but it contributes to histone methylation and Paf1C recruitment to active genes. Thus together with Rtf1 it combines to couple the Paf1 complex to elongating polymerase. The family has been added to the P-loop clan on the basis of the topology of the b-stranded core, and its similarity to Ras.
:
Pssm-ID: 461570 Cd Length: 157 Bit Score: 179.71 E-value: 6.11e-56
Paf1 complex subunit CDC73 N-terminal; CDC73_N is the N-terminal region of the members of ...
5-134
1.15e-07
Paf1 complex subunit CDC73 N-terminal; CDC73_N is the N-terminal region of the members of CDC73_C, pfam05179. CDC73 forms part of the Paf1 post-initiation complex. The exact function within the complex is not known.
The actual alignment was detected with superfamily member pfam16050:
Pssm-ID: 464994 Cd Length: 301 Bit Score: 52.80 E-value: 1.15e-07
RNA pol II accessory factor, Cdc73 family, C-terminal; CDC73 is an RNA polymerase II accessory ...
190-344
6.11e-56
RNA pol II accessory factor, Cdc73 family, C-terminal; CDC73 is an RNA polymerase II accessory factor, and forms part of the Paf1 complex that has roles in post-initiation events. More specifically, crystal structure analysis shows the C-terminus to be a Ras-like domain that adopts a fold that is highly similar to GTPases of the Ras superfamily. The canonical nucleotide binding pocket is altered in CDC73, and there is no nucleotide ligand, but it contributes to histone methylation and Paf1C recruitment to active genes. Thus together with Rtf1 it combines to couple the Paf1 complex to elongating polymerase. The family has been added to the P-loop clan on the basis of the topology of the b-stranded core, and its similarity to Ras.
Pssm-ID: 461570 Cd Length: 157 Bit Score: 179.71 E-value: 6.11e-56
Paf1 complex subunit CDC73 N-terminal; CDC73_N is the N-terminal region of the members of ...
5-134
1.15e-07
Paf1 complex subunit CDC73 N-terminal; CDC73_N is the N-terminal region of the members of CDC73_C, pfam05179. CDC73 forms part of the Paf1 post-initiation complex. The exact function within the complex is not known.
Pssm-ID: 464994 Cd Length: 301 Bit Score: 52.80 E-value: 1.15e-07
RNA pol II accessory factor, Cdc73 family, C-terminal; CDC73 is an RNA polymerase II accessory ...
190-344
6.11e-56
RNA pol II accessory factor, Cdc73 family, C-terminal; CDC73 is an RNA polymerase II accessory factor, and forms part of the Paf1 complex that has roles in post-initiation events. More specifically, crystal structure analysis shows the C-terminus to be a Ras-like domain that adopts a fold that is highly similar to GTPases of the Ras superfamily. The canonical nucleotide binding pocket is altered in CDC73, and there is no nucleotide ligand, but it contributes to histone methylation and Paf1C recruitment to active genes. Thus together with Rtf1 it combines to couple the Paf1 complex to elongating polymerase. The family has been added to the P-loop clan on the basis of the topology of the b-stranded core, and its similarity to Ras.
Pssm-ID: 461570 Cd Length: 157 Bit Score: 179.71 E-value: 6.11e-56
Paf1 complex subunit CDC73 N-terminal; CDC73_N is the N-terminal region of the members of ...
5-134
1.15e-07
Paf1 complex subunit CDC73 N-terminal; CDC73_N is the N-terminal region of the members of CDC73_C, pfam05179. CDC73 forms part of the Paf1 post-initiation complex. The exact function within the complex is not known.
Pssm-ID: 464994 Cd Length: 301 Bit Score: 52.80 E-value: 1.15e-07
Database: CDSEARCH/cdd Low complexity filter: no Composition Based Adjustment: yes E-value threshold: 0.01
References:
Wang J et al. (2023), "The conserved domain database in 2023", Nucleic Acids Res.51(D)384-8.
Lu S et al. (2020), "The conserved domain database in 2020", Nucleic Acids Res.48(D)265-8.
Marchler-Bauer A et al. (2017), "CDD/SPARCLE: functional classification of proteins via subfamily domain architectures.", Nucleic Acids Res.45(D)200-3.
of the residues that compose this conserved feature have been mapped to the query sequence.
Click on the triangle to view details about the feature, including a multiple sequence alignment
of your query sequence and the protein sequences used to curate the domain model,
where hash marks (#) above the aligned sequences show the location of the conserved feature residues.
The thumbnail image, if present, provides an approximate view of the feature's location in 3 dimensions.
Click on the triangle for interactive 3D structure viewing options.
Functional characterization of the conserved domain architecture found on the query.
Click here to see more details.
This image shows a graphical summary of conserved domains identified on the query sequence.
The Show Concise/Full Display button at the top of the page can be used to select the desired level of detail: only top scoring hits
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Domains are color coded according to superfamilies
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Others (non-specific hits) and
superfamily placeholders are drawn in pastel colors.
if a domain or superfamily has been annotated with functional sites (conserved features),
they are mapped to the query sequence and indicated through sets of triangles
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click on the bars or triangles to view your query sequence embedded in a multiple sequence alignment of the proteins used to develop the corresponding domain model.
The table lists conserved domains identified on the query sequence. Click on the plus sign (+) on the left to display full descriptions, alignments, and scores.
Click on the domain model's accession number to view the multiple sequence alignment of the proteins used to develop the corresponding domain model.
To view your query sequence embedded in that multiple sequence alignment, click on the colored bars in the Graphical Summary portion of the search results page,
or click on the triangles, if present, that represent functional sites (conserved features)
mapped to the query sequence.
Concise Display shows only the best scoring domain model, in each hit category listed below except non-specific hits, for each region on the query sequence.
(labeled illustration) Standard Display shows only the best scoring domain model from each source, in each hit category listed below for each region on the query sequence.
(labeled illustration) Full Display shows all domain models, in each hit category below, that meet or exceed the RPS-BLAST threshold for statistical significance.
(labeled illustration) Four types of hits can be shown, as available,
for each region on the query sequence:
specific hits meet or exceed a domain-specific e-value threshold
(illustrated example)
and represent a very high confidence that the query sequence belongs to the same protein family as the sequences use to create the domain model
non-specific hits
meet or exceed the RPS-BLAST threshold for statistical significance (default E-value cutoff of 0.01, or an E-value selected by user via the
advanced search options)
the domain superfamily to which the specific and non-specific hits belong
multi-domain models that were computationally detected and are likely to contain multiple single domains
Retrieve proteins that contain one or more of the domains present in the query sequence, using the Conserved Domain Architecture Retrieval Tool
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