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0  structures 32  species 0  interactions 33  sequences 1  architecture

Family: Rtt102p (PF09510)

Summary: Rtt102p-like transcription regulator protein

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This tab holds the annotation information that is stored in the Pfam database. As we move to using Wikipedia as our main source of annotation, the contents of this tab will be gradually replaced by the Wikipedia tab.

Rtt102p-like transcription regulator protein Provide feedback

This protein is found in fungi. The family includes Rtt102p, a transcription regulator protein which appears to be integrally associated with both the Swi-Snf and the RSC chromatin remodelling complexes, [1].

Literature references

  1. Graumann J, Dunipace LA, Seol JH, McDonald WH, Yates JR 3rd, Wold BJ, Deshaies RJ; , Mol Cell Proteomics. 2004;3:226-237.: Applicability of tandem affinity purification MudPIT to pathway proteomics in yeast. PUBMED:14660704 EPMC:14660704


External database links

This tab holds annotation information from the InterPro database.

InterPro entry IPR018304

Rtt102p (Regulator of Ty1 Transposition Protein 102) is a transcription regulator protein found in fungi that appears to be integrally associated with both the Swi-Snf and the RSC chromatin remodelling complexes, [PUBMED:14660704]. RSC is involved in transcription regulation and nucleosome positioning, and is responsible for the transfer of a histone octamer from a nucleosome core particle to naked DNA. The reaction requires ATP and involves an activated RSC-nucleosome intermediate. Remodelling reaction also involves DNA translocation, DNA twist and conformational change. As a reconfigurer of centromeric and flanking nucleosomes, RSC complex is required both for proper kinetochore function in chromosome segregation and, via a PKC1-dependent signalling pathway, for organisation of the cellular cytoskeleton. It is a probable component of the SWI/SNF complex, an ATP-dependent chromatin-remodelling complex, is required for the positive and negative regulation of gene expression of a large number of genes. It changes chromatin structure by altering DNA-histone contacts within a nucleosome, leading eventually to a change in nucleosome position, thus facilitating or repressing binding of gene-specific transcription factors.

Domain organisation

Below is a listing of the unique domain organisations or architectures in which this domain is found. More...

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Alignments

We store a range of different sequence alignments for families. As well as the seed alignment from which the family is built, we provide the full alignment, generated by searching the sequence database using the family HMM. We also generate alignments using four representative proteomes (RP) sets, the NCBI sequence database, and our metagenomics sequence database. More...

View options

We make a range of alignments for each Pfam-A family. You can see a description of each above. You can view these alignments in various ways but please note that some types of alignment are never generated while others may not be available for all families, most commonly because the alignments are too large to handle.

  Seed
(6)
Full
(33)
Representative proteomes NCBI
(32)
Meta
(0)
RP15
(3)
RP35
(10)
RP55
(17)
RP75
(20)
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1Cannot generate PP/Heatmap alignments for seeds; no PP data available

Key: ✓ available, x not generated, not available.

Format an alignment

  Seed
(6)
Full
(33)
Representative proteomes NCBI
(32)
Meta
(0)
RP15
(3)
RP35
(10)
RP55
(17)
RP75
(20)
Alignment:
Format:
Order:
Sequence:
Gaps:
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Download options

We make all of our alignments available in Stockholm format. You can download them here as raw, plain text files or as gzip-compressed files.

  Seed
(6)
Full
(33)
Representative proteomes NCBI
(32)
Meta
(0)
RP15
(3)
RP35
(10)
RP55
(17)
RP75
(20)
Raw Stockholm Download   Download   Download   Download   Download   Download   Download    
Gzipped Download   Download   Download   Download   Download   Download   Download    

You can also download a FASTA format file containing the full-length sequences for all sequences in the full alignment.

External links

MyHits provides a collection of tools to handle multiple sequence alignments. For example, one can refine a seed alignment (sequence addition or removal, re-alignment or manual edition) and then search databases for remote homologs using HMMER3.

Pfam alignments:

HMM logo

HMM logos is one way of visualising profile HMMs. Logos provide a quick overview of the properties of an HMM in a graphical form. You can see a more detailed description of HMM logos and find out how you can interpret them here. More...

Trees

This page displays the phylogenetic tree for this family's seed alignment. We use FastTree to calculate neighbour join trees with a local bootstrap based on 100 resamples (shown next to the tree nodes). FastTree calculates approximately-maximum-likelihood phylogenetic trees from our seed alignment.

Note: You can also download the data file for the tree.

Curation and family details

This section shows the detailed information about the Pfam family. You can see the definitions of many of the terms in this section in the glossary and a fuller explanation of the scoring system that we use in the scores section of the help pages.

Curation View help on the curation process

Seed source: Manual
Previous IDs: none
Type: Family
Author: Wood V, Coggill P
Number in seed: 6
Number in full: 33
Average length of the domain: 128.50 aa
Average identity of full alignment: 40 %
Average coverage of the sequence by the domain: 65.10 %

HMM information View help on HMM parameters

HMM build commands:
build method: hmmbuild -o /dev/null HMM SEED
search method: hmmsearch -Z 23193494 -E 1000 --cpu 4 HMM pfamseq
Model details:
Parameter Sequence Domain
Gathering cut-off 21.4 21.4
Trusted cut-off 22.8 22.4
Noise cut-off 20.4 18.4
Model length: 130
Family (HMM) version: 5
Download: download the raw HMM for this family

Species distribution

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