首页> 外文OA文献 >BREAST CANCER-ASSOCIATED MISSENSE MUTANTS OF THE PALB2 WD40 DOMAIN, WHICH DIRECTLY BINDS RAD51C, RAD51 AND BRCA2, DISRUPT DNA REPAIR
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BREAST CANCER-ASSOCIATED MISSENSE MUTANTS OF THE PALB2 WD40 DOMAIN, WHICH DIRECTLY BINDS RAD51C, RAD51 AND BRCA2, DISRUPT DNA REPAIR

机译:直接结合RAD51C,RAD51和BRCA2,破坏DNA修复的PALB2 WD40域的乳房癌相关错误突变

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摘要

Heterozygous carriers of germ-line mutations in the BRCA2/FANCD1, PALB2/FANCN, and RAD51C/FANCO DNA repair genes have an increased life-time risk to develop breast, ovarian and other cancers; bi-allelic mutations in these genes clinically manifest as Fanconi anemia (FA). Here, we demonstrate that RAD51C is part of a novel protein complex that contains PALB2 and BRCA2. Further, the PALB2 WD40 domain can directly and independently bind RAD51C and BRCA2. To understand the role of these homologous recombination (HR) proteins in DNA repair, we functionally characterize effects of missense mutations of the PALB2 WD40 domain that have been reported in breast cancer patients. In contrast to large truncations of PALB2, which display a complete loss of interaction, the L939W, T1030I, and L1143P missense mutants/variants of PALB2 WD40 domain are associated with altered direct binding patterns to the RAD51C, RAD51 and BRCA2 HR proteins in biochemical assays. Further, the T1030I missense mutant is unstable, while the L939W and L1143P proteins are stable but partially disrupt the PALB2-RAD51C-BRCA2 complex in cells. Functionally, the L939W and L1143P mutants display a decreased capacity for DNA double-strand break-induced HR and an increased cellular sensitivity to ionizing radiation. As further evidence for the functional importance of the HR complex, RAD51C mutants that are associated with cancer susceptibility and FA also display decreased complex formation with PALB2. Together, our results suggest that three different cancer susceptibility and FA proteins function in a DNA repair pathway based upon the PALB2 WD40 domain binding to RAD51C and BRCA2.
机译:BRCA2 / FANCD1,PALB2 / FANCN和RAD51C / FANCO DNA修复基因中种系突变的杂合子携带者罹患乳腺癌,卵巢癌和其他癌症的终生风险增加;这些基因中的双等位基因突变在临床上表现为范科尼贫血(FA)。在这里,我们证明RAD51C是包含PALB2和BRCA2的新型蛋白质复合物的一部分。此外,PALB2 WD40结构域可以直接和独立地结合RAD51C和BRCA2。为了了解这些同源重组(HR)蛋白在DNA修复中的作用,我们在功能上表征了乳腺癌患者中已报道的PALB2 WD40结构域的错义突变的影响。与显示相互作用完全丧失的大截短的PALB2截短相反,在生化分析中,PALB2 WD40域的L939W,T1030I和L1143P错义突变体/变体与RAD51C,RAD51和BRCA2 HR蛋白的直接结合模式发生了改变。此外,T1030I错义突变体是不稳定的,而L939W和L1143P蛋白是稳定的,但会部分破坏细胞中的PALB2-RAD51C-BRCA2复合物。从功能上讲,L939W和L1143P突变体对DNA双链断裂诱导的HR的能力降低,并且对电离辐射的细胞敏感性提高。作为HR复合物功能重要性的进一步证据,与癌症易感性和FA相关的RAD51C突变体也显示出与PALB2的复合物形成减少。总之,我们的结果表明,基于PALB2 WD40域与RAD51C和BRCA2结合的DNA修复途径中,三种不同的癌症易感性和FA蛋白起作用。

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