Fabbro Megan, Schuechner Stefan, Au Wendy W Y, Henderson Beric R
Westmead Institute for Cancer Research, Westmead Millennium Institute at Westmead Hospital, University of Sydney, Westmead, 2145 New South Wales, Australia.
Exp Cell Res. 2004 Aug 15;298(2):661-73. doi: 10.1016/j.yexcr.2004.05.004.
BRCA1 is involved in maintaining genomic integrity and, as a regulator of the G2/M checkpoint, contributes to DNA repair and cell survival. The overexpression of BRCA1 elicits diverse cellular responses including apoptosis due to the stimulation of specific signaling pathways. BRCA1 is normally regulated by protein turnover, but is stabilized by BARD1 which can recruit BRCA1 to the nucleus to form a ubiquitin E3 ligase complex involved in DNA repair or cell survival. Here, we identify BARD1 as a regulator of BRCA1-dependent apoptosis. Using transfected MCF-7 breast cancer cells, we found that BRCA1-induced apoptosis was independent of p53 and was stimulated by BRCA1 nuclear export. Conversely, BARD1 reduced BRCA1-dependent apoptosis by a mechanism involving nuclear sequestration. Regulation of apoptosis by BARD1 was reduced by BRCA1 cancer mutations that disrupt Ub ligase function. Transfection of BRCA1 N-terminal peptides that disrupted the cellular BRCA1-BARD1 interaction caused a loss of nuclear BRCA1 that correlated with increased apoptosis in single cell assays, but did not alter localization or expression of endogenous BARD1. Reducing BARD1 levels by siRNA caused a small increase in apoptosis. Our findings identify a novel apoptosis inhibitory function of BARD1 and suggest that nuclear retention of BRCA1-BARD1 complexes contributes to both DNA repair and cell survival.
BRCA1参与维持基因组完整性,作为G2/M期检查点的调节因子,有助于DNA修复和细胞存活。BRCA1的过表达会引发多种细胞反应,包括因特定信号通路的刺激而导致的细胞凋亡。BRCA1通常受蛋白质周转调节,但可被BARD1稳定,BARD1可将BRCA1招募至细胞核,形成参与DNA修复或细胞存活的泛素E3连接酶复合物。在此,我们确定BARD1是BRCA1依赖性细胞凋亡的调节因子。利用转染的MCF-7乳腺癌细胞,我们发现BRCA1诱导的细胞凋亡独立于p53,并受BRCA1核输出的刺激。相反,BARD1通过一种涉及核隔离的机制减少BRCA1依赖性细胞凋亡。破坏泛素连接酶功能的BRCA1癌症突变降低了BARD1对细胞凋亡的调节作用。转染破坏细胞内BRCA1-BARD1相互作用的BRCA1 N端肽导致核内BRCA1丢失,这与单细胞试验中细胞凋亡增加相关,但未改变内源性BARD1的定位或表达。通过小干扰RNA降低BARD1水平会导致细胞凋亡略有增加。我们的研究结果确定了BARD1一种新的细胞凋亡抑制功能,并表明BRCA1-BARD1复合物的核保留有助于DNA修复和细胞存活。
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