Wang Rui-Hong, Yu Hongtao, Deng Chu-Xia
National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, MD 20892, USA.
Proc Natl Acad Sci U S A. 2004 Dec 7;101(49):17108-13. doi: 10.1073/pnas.0407585101. Epub 2004 Nov 24.
BRCA1-associated breast cancer exhibits significantly higher levels of chromosomal abnormalities than sporadic breast cancers. However, the molecular mechanisms regarding the roles of BRCA1 in maintaining genome integrity remain elusive. By using a mouse model deficient for Brca1 full-length isoform (Brca1(Delta11/Delta11)), we found that Brca1(Delta11/Delta11) cells displayed decreased expression of a number of genes that are involved in the spindle checkpoint, including Mad2, which is a key component of spindle checkpoint that inhibits anaphase-promoting complex. We showed that Brca1(Delta11/Delta11) cells failed to arrest at metaphase in the presence of nocodazole and underwent apoptosis because of activation of p53. Consistently, reconstitution of Mad2 in Brca1(Delta11/Delta11) cells partially restored the spindle checkpoint and attenuated apoptosis. By using UBR60 cells, which carry tetracycline-regulated expression of BRCA1, we demonstrated that BRCA1 binds to transcription factor OCT-1 and up-regulates the transcription of MAD2. Furthermore, we showed that the induction of BRCA1 to endogenous MAD2 or transfected MAD2 luciferase reporter in UBR60 cells was completely inhibited by acute suppression of BRCA1 by RNA interference. These data reveal a role of BRCA1 in maintaining genome integrity by interplaying with p53 and genes that are involved in the spindle checkpoint and apoptosis.
与BRCA1相关的乳腺癌比散发性乳腺癌表现出明显更高水平的染色体异常。然而,关于BRCA1在维持基因组完整性中作用的分子机制仍不清楚。通过使用一种缺乏Brca1全长异构体的小鼠模型(Brca1(Delta11/Delta11)),我们发现Brca1(Delta11/Delta11)细胞中一些参与纺锤体检查点的基因表达下降,包括Mad2,它是纺锤体检查点的关键成分,可抑制后期促进复合物。我们表明,在存在诺考达唑的情况下,Brca1(Delta11/Delta11)细胞无法在中期停滞,并因p53激活而发生凋亡。一致地,在Brca1(Delta11/Delta11)细胞中重建Mad2可部分恢复纺锤体检查点并减轻凋亡。通过使用携带四环素调控的BRCA1表达的UBR60细胞,我们证明BRCA1与转录因子OCT-1结合并上调MAD2的转录。此外,我们表明,在UBR60细胞中,通过RNA干扰急性抑制BRCA1可完全抑制BRCA1对内源性MAD2或转染的MAD2荧光素酶报告基因的诱导。这些数据揭示了BRCA1通过与p53以及参与纺锤体检查点和凋亡的基因相互作用在维持基因组完整性中的作用。