The ubiquitin E3 ligase activity of BRCA1 and its biological functions

<p>Abstract</p> <p>The basal-like breast cancer, a new category of breast cancer associated with poor prognosis and possibly unique chemosensitivity, is a current topic in the breast cancer field. Evidence from multiple sources strongly indicate that impairment of BRCA1 pathways is...

Full description

Bibliographic Details
Main Authors: Takeshita Takashi, Koike Ayaka, Wu Wenwen, Ohta Tomohiko
Format: Article
Language:English
Published: BMC 2008-01-01
Series:Cell Division
Online Access:http://www.celldiv.com/content/3/1/1
id doaj-b3a5e49897a64c11a1bb9e331fcdff65
record_format Article
spelling doaj-b3a5e49897a64c11a1bb9e331fcdff652020-11-24T21:33:53ZengBMCCell Division1747-10282008-01-0131110.1186/1747-1028-3-1The ubiquitin E3 ligase activity of BRCA1 and its biological functionsTakeshita TakashiKoike AyakaWu WenwenOhta Tomohiko<p>Abstract</p> <p>The basal-like breast cancer, a new category of breast cancer associated with poor prognosis and possibly unique chemosensitivity, is a current topic in the breast cancer field. Evidence from multiple sources strongly indicate that impairment of BRCA1 pathways is responsible for this phenotype, implying the importance of BRCA1 not only in familial breast cancers but also in sporadic cancers. BRCA1 acts as a hub protein that coordinates a diverse range of cellular pathways to maintain genomic stability. BRCA1 participates in multiple cellular supercomplexes to execute its tasks and, in most of the complexes, BRCA1 exists as a RING heterodimer with BARD1 to provide ubiquitin E3 ligase activity that is required for its tumor suppressor function. It was revealed recently that the BRCA1 RING finger is capable of catalyzing multiple types of ubiquitination depending upon the interacting E2, the ubiquitin carrier protein. BRCA1 may catalyze distinct ubiquitination on different substrates as the situation demands. On the other hand, in response to DNA double-strand breaks where BRCA1 plays its major role for homologous recombination repair, recent evidence showed that ubiquitination is a critical step to recruit BRCA1 to the damaged site through UIM (ubiquitin interacting motif) containing protein RAP80. Thus, ubiquitin and BRCA1 likely affect each other in many ways to perform cellular functions. Elucidation of this mechanism in relation to cell survival is now much anticipated because it could be a key to predict chemosensitivity of basal-like breast cancer.</p> http://www.celldiv.com/content/3/1/1
collection DOAJ
language English
format Article
sources DOAJ
author Takeshita Takashi
Koike Ayaka
Wu Wenwen
Ohta Tomohiko
spellingShingle Takeshita Takashi
Koike Ayaka
Wu Wenwen
Ohta Tomohiko
The ubiquitin E3 ligase activity of BRCA1 and its biological functions
Cell Division
author_facet Takeshita Takashi
Koike Ayaka
Wu Wenwen
Ohta Tomohiko
author_sort Takeshita Takashi
title The ubiquitin E3 ligase activity of BRCA1 and its biological functions
title_short The ubiquitin E3 ligase activity of BRCA1 and its biological functions
title_full The ubiquitin E3 ligase activity of BRCA1 and its biological functions
title_fullStr The ubiquitin E3 ligase activity of BRCA1 and its biological functions
title_full_unstemmed The ubiquitin E3 ligase activity of BRCA1 and its biological functions
title_sort ubiquitin e3 ligase activity of brca1 and its biological functions
publisher BMC
series Cell Division
issn 1747-1028
publishDate 2008-01-01
description <p>Abstract</p> <p>The basal-like breast cancer, a new category of breast cancer associated with poor prognosis and possibly unique chemosensitivity, is a current topic in the breast cancer field. Evidence from multiple sources strongly indicate that impairment of BRCA1 pathways is responsible for this phenotype, implying the importance of BRCA1 not only in familial breast cancers but also in sporadic cancers. BRCA1 acts as a hub protein that coordinates a diverse range of cellular pathways to maintain genomic stability. BRCA1 participates in multiple cellular supercomplexes to execute its tasks and, in most of the complexes, BRCA1 exists as a RING heterodimer with BARD1 to provide ubiquitin E3 ligase activity that is required for its tumor suppressor function. It was revealed recently that the BRCA1 RING finger is capable of catalyzing multiple types of ubiquitination depending upon the interacting E2, the ubiquitin carrier protein. BRCA1 may catalyze distinct ubiquitination on different substrates as the situation demands. On the other hand, in response to DNA double-strand breaks where BRCA1 plays its major role for homologous recombination repair, recent evidence showed that ubiquitination is a critical step to recruit BRCA1 to the damaged site through UIM (ubiquitin interacting motif) containing protein RAP80. Thus, ubiquitin and BRCA1 likely affect each other in many ways to perform cellular functions. Elucidation of this mechanism in relation to cell survival is now much anticipated because it could be a key to predict chemosensitivity of basal-like breast cancer.</p>
url http://www.celldiv.com/content/3/1/1
work_keys_str_mv AT takeshitatakashi theubiquitine3ligaseactivityofbrca1anditsbiologicalfunctions
AT koikeayaka theubiquitine3ligaseactivityofbrca1anditsbiologicalfunctions
AT wuwenwen theubiquitine3ligaseactivityofbrca1anditsbiologicalfunctions
AT ohtatomohiko theubiquitine3ligaseactivityofbrca1anditsbiologicalfunctions
AT takeshitatakashi ubiquitine3ligaseactivityofbrca1anditsbiologicalfunctions
AT koikeayaka ubiquitine3ligaseactivityofbrca1anditsbiologicalfunctions
AT wuwenwen ubiquitine3ligaseactivityofbrca1anditsbiologicalfunctions
AT ohtatomohiko ubiquitine3ligaseactivityofbrca1anditsbiologicalfunctions
_version_ 1725951422639374336