RAWUL: a new ubiquitin-like domain in PRC1 ring finger proteins that unveils putative plant and worm PRC1 orthologs.

BACKGROUND: Polycomb group (PcG) proteins are a set of chromatin-modifying proteins that play a key role in epigenetic gene regulation. The PcG proteins form large multiprotein complexes with different activities. The two best-characterized PcG complexes are the PcG repressive complex 1 (PRC1) and...

Бүрэн тодорхойлолт

Номзүйн дэлгэрэнгүй
Үндсэн зохиолчид: Sanchez-Pulido, L, Devos, D, Sung, Z, Calonje, M
Формат: Journal article
Хэл сонгох:English
Хэвлэсэн: BioMed Central 2008
_version_ 1826304373596094464
author Sanchez-Pulido, L
Devos, D
Sung, Z
Calonje, M
author_facet Sanchez-Pulido, L
Devos, D
Sung, Z
Calonje, M
author_sort Sanchez-Pulido, L
collection OXFORD
description BACKGROUND: Polycomb group (PcG) proteins are a set of chromatin-modifying proteins that play a key role in epigenetic gene regulation. The PcG proteins form large multiprotein complexes with different activities. The two best-characterized PcG complexes are the PcG repressive complex 1 (PRC1) and 2 (PRC2) that respectively possess histone 2A lysine 119 E3 ubiquitin ligase and histone 3 lysine 27 methyltransferase activities. While PRC2-like complexes are conserved throughout the eukaryotic kingdoms, PRC1-like complexes have only been described in Drosophila and vertebrates. Since both complexes are required for the gene silencing mechanism in Drosophila and vertebrates, how PRC1 function is realized in organisms that apparently lack PRC1 such as plants, is so far unknown. In vertebrates, PRC1 includes three proteins, Ring1B, Ring1A, and Bmi-1 that form an E3 ubiquitin ligase complex. These PRC1 proteins have an N-terminally located Ring finger domain associated to a poorly characterized conserved C-terminal region. RESULTS: We obtained statistically significant evidences of sequence similarity between the C-terminal region of the PRC1 Ring finger proteins and the ubiquitin (Ubq)-like family proteins, thus defining a new Ubq-like domain, the RAWUL domain. In addition, our analysis revealed the existence of plant and worm proteins that display the conserved combination of a Ring finger domain at the N-terminus and a RAWUL domain at the C-terminus. CONCLUSION: Analysis of the conserved domain architecture among PRC1 Ring finger proteins revealed the existence of long sought PRC1 protein orthologs in these organisms, suggesting the functional conservation of PRC1 throughout higher eukaryotes.
first_indexed 2024-03-07T06:16:49Z
format Journal article
id oxford-uuid:f15a8d94-8c8e-491f-bbb4-d6d1e0078b74
institution University of Oxford
language English
last_indexed 2024-03-07T06:16:49Z
publishDate 2008
publisher BioMed Central
record_format dspace
spelling oxford-uuid:f15a8d94-8c8e-491f-bbb4-d6d1e0078b742022-03-27T11:55:23ZRAWUL: a new ubiquitin-like domain in PRC1 ring finger proteins that unveils putative plant and worm PRC1 orthologs.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:f15a8d94-8c8e-491f-bbb4-d6d1e0078b74EnglishSymplectic Elements at OxfordBioMed Central2008Sanchez-Pulido, LDevos, DSung, ZCalonje, M BACKGROUND: Polycomb group (PcG) proteins are a set of chromatin-modifying proteins that play a key role in epigenetic gene regulation. The PcG proteins form large multiprotein complexes with different activities. The two best-characterized PcG complexes are the PcG repressive complex 1 (PRC1) and 2 (PRC2) that respectively possess histone 2A lysine 119 E3 ubiquitin ligase and histone 3 lysine 27 methyltransferase activities. While PRC2-like complexes are conserved throughout the eukaryotic kingdoms, PRC1-like complexes have only been described in Drosophila and vertebrates. Since both complexes are required for the gene silencing mechanism in Drosophila and vertebrates, how PRC1 function is realized in organisms that apparently lack PRC1 such as plants, is so far unknown. In vertebrates, PRC1 includes three proteins, Ring1B, Ring1A, and Bmi-1 that form an E3 ubiquitin ligase complex. These PRC1 proteins have an N-terminally located Ring finger domain associated to a poorly characterized conserved C-terminal region. RESULTS: We obtained statistically significant evidences of sequence similarity between the C-terminal region of the PRC1 Ring finger proteins and the ubiquitin (Ubq)-like family proteins, thus defining a new Ubq-like domain, the RAWUL domain. In addition, our analysis revealed the existence of plant and worm proteins that display the conserved combination of a Ring finger domain at the N-terminus and a RAWUL domain at the C-terminus. CONCLUSION: Analysis of the conserved domain architecture among PRC1 Ring finger proteins revealed the existence of long sought PRC1 protein orthologs in these organisms, suggesting the functional conservation of PRC1 throughout higher eukaryotes.
spellingShingle Sanchez-Pulido, L
Devos, D
Sung, Z
Calonje, M
RAWUL: a new ubiquitin-like domain in PRC1 ring finger proteins that unveils putative plant and worm PRC1 orthologs.
title RAWUL: a new ubiquitin-like domain in PRC1 ring finger proteins that unveils putative plant and worm PRC1 orthologs.
title_full RAWUL: a new ubiquitin-like domain in PRC1 ring finger proteins that unveils putative plant and worm PRC1 orthologs.
title_fullStr RAWUL: a new ubiquitin-like domain in PRC1 ring finger proteins that unveils putative plant and worm PRC1 orthologs.
title_full_unstemmed RAWUL: a new ubiquitin-like domain in PRC1 ring finger proteins that unveils putative plant and worm PRC1 orthologs.
title_short RAWUL: a new ubiquitin-like domain in PRC1 ring finger proteins that unveils putative plant and worm PRC1 orthologs.
title_sort rawul a new ubiquitin like domain in prc1 ring finger proteins that unveils putative plant and worm prc1 orthologs
work_keys_str_mv AT sanchezpulidol rawulanewubiquitinlikedomaininprc1ringfingerproteinsthatunveilsputativeplantandwormprc1orthologs
AT devosd rawulanewubiquitinlikedomaininprc1ringfingerproteinsthatunveilsputativeplantandwormprc1orthologs
AT sungz rawulanewubiquitinlikedomaininprc1ringfingerproteinsthatunveilsputativeplantandwormprc1orthologs
AT calonjem rawulanewubiquitinlikedomaininprc1ringfingerproteinsthatunveilsputativeplantandwormprc1orthologs