Lo Thomas, Pellegrini Luca, Venkitaraman Ashok R, Blundell Tom L
Department of Biochemistry, University of Cambridge, Tennis Court Road, Cambridge CB2 1GA, UK.
DNA Repair (Amst). 2003 Sep 18;2(9):1015-28. doi: 10.1016/s1568-7864(03)00097-1.
In humans, the interactions between the breast cancer susceptibility protein, BRCA2, and the RAD51 recombinase are essential for DNA repair by homologous recombination (HR), failure of which can predispose to cancer. The interactions occur through conserved BRC repeat motifs, encoded in BRCA2, binding directly to RAD51. Here, we describe full and partial BRCA2 homologues from a wide range of eukaryotes, including Drosophila melanogaster and two Plasmodium species. The crystal structure of the human BRC4-RAD51 complex allows identification of residues that are important for protein-protein interaction, and defines interaction sequence fingerprints for the BRC repeat and for RAD51. These allow us to predict that most eukaryotic RAD51 and BRC repeat orthologues should be capable of mutual interactions. We find no evidence for the presence of BRC repeats in yeast, Archaea and bacteria, and their RAD51 orthologues do not fulfil the criteria for binding the BRC repeat. Similarly, human RAD51 paralogues, including RAD51B, RAD51C, RAD51D, XRCC2, XRCC3 and DMC1, are not predicted to bind the BRC repeat. Conservation of the BRC repeat and RAD51 sequence fingerprints across a wide range of eukaryotic species substantiates the functional significance of the BRCA2-RAD51 interactions. The idea of multiple BRC repeats with binding specificity towards RAD51 leads us to suggest a possible model for the participation of BRCA2 in RAD51 nucleoprotein filament formation.
在人类中,乳腺癌易感蛋白BRCA2与RAD51重组酶之间的相互作用对于通过同源重组(HR)进行的DNA修复至关重要,HR功能的缺失会使人易患癌症。这种相互作用通过BRCA2中编码的保守BRC重复基序直接与RAD51结合来实现。在此,我们描述了来自多种真核生物的完整和部分BRCA2同源物,包括黑腹果蝇和两种疟原虫。人BRC4-RAD51复合物的晶体结构使得能够鉴定对蛋白质-蛋白质相互作用重要的残基,并确定BRC重复序列和RAD51的相互作用序列指纹。这些使我们能够预测大多数真核生物的RAD51和BRC重复序列直向同源物应该能够相互作用。我们没有发现酵母、古细菌和细菌中存在BRC重复序列的证据,并且它们的RAD51直向同源物不符合结合BRC重复序列的标准。同样,人类RAD51旁系同源物,包括RAD51B、RAD51C、RAD51D、XRCC2、XRCC3和DMC1,预计不会结合BRC重复序列。广泛的真核生物物种中BRC重复序列和RAD51序列指纹的保守性证实了BRCA2-RAD51相互作用的功能重要性。多个对RAD51具有结合特异性的BRC重复序列的概念使我们提出了一个BRCA2参与RAD51核蛋白丝形成的可能模型。