Greenberg Roger A, Sobhian Bijan, Pathania Shailja, Cantor Sharon B, Nakatani Yoshihiro, Livingston David M
Department of Genetics, Harvard Medical School and The Dana Farber Cancer Institute, Boston, Massachusetts 02115, USA.
Genes Dev. 2006 Jan 1;20(1):34-46. doi: 10.1101/gad.1381306.
The BRCA1 gene product and its stoichiometric binding partner, BARD1, play a vital role in the cellular response to DNA damage. However, how they acquire specific biochemical functions after DNA damage is poorly understood. Following exposure to genotoxic stress, DNA damage-specific interactions were observed between BRCA1/BARD1 and the DNA damage-response proteins, TopBP1 and Mre11/Rad50/NBS1. Two distinct DNA damage-dependent super complexes emerged; their activation was dependent, in part, on the actions of specific checkpoint kinases, and each super complex contributed to a distinctive aspect of the DNA damage response. The results support a new, multifactorial model that describes how genotoxic stress enables BRCA1 to execute a diverse set of DNA damage-response functions.
BRCA1基因产物及其化学计量结合伴侣BARD1在细胞对DNA损伤的反应中起着至关重要的作用。然而,人们对它们在DNA损伤后如何获得特定生化功能却知之甚少。暴露于基因毒性应激后,观察到BRCA1/BARD1与DNA损伤反应蛋白TopBP1和Mre11/Rad50/NBS1之间存在DNA损伤特异性相互作用。出现了两种不同的依赖于DNA损伤的超级复合物;它们的激活部分依赖于特定检查点激酶的作用,并且每个超级复合物都对DNA损伤反应的一个独特方面有贡献。这些结果支持了一个新的多因素模型,该模型描述了基因毒性应激如何使BRCA1执行一系列不同的DNA损伤反应功能。