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SETD2功能丧失通过复制应激和DNA修复受损促进肾癌分支进化。

SETD2 loss-of-function promotes renal cancer branched evolution through replication stress and impaired DNA repair.

作者信息

Kanu N, Grönroos E, Martinez P, Burrell R A, Yi Goh X, Bartkova J, Maya-Mendoza A, Mistrík M, Rowan A J, Patel H, Rabinowitz A, East P, Wilson G, Santos C R, McGranahan N, Gulati S, Gerlinger M, Birkbak N J, Joshi T, Alexandrov L B, Stratton M R, Powles T, Matthews N, Bates P A, Stewart A, Szallasi Z, Larkin J, Bartek J, Swanton C

机构信息

UCL Cancer Institute, Paul O'Gorman Building, London, UK.

Cancer Research UK London Research Institute, London, UK.

出版信息

Oncogene. 2015 Nov 12;34(46):5699-708. doi: 10.1038/onc.2015.24. Epub 2015 Mar 2.

Abstract

Defining mechanisms that generate intratumour heterogeneity and branched evolution may inspire novel therapeutic approaches to limit tumour diversity and adaptation. SETD2 (Su(var), Enhancer of zeste, Trithorax-domain containing 2) trimethylates histone-3 lysine-36 (H3K36me3) at sites of active transcription and is mutated in diverse tumour types, including clear cell renal carcinomas (ccRCCs). Distinct SETD2 mutations have been identified in spatially separated regions in ccRCC, indicative of intratumour heterogeneity. In this study, we have addressed the consequences of SETD2 loss-of-function through an integrated bioinformatics and functional genomics approach. We find that bi-allelic SETD2 aberrations are not associated with microsatellite instability in ccRCC. SETD2 depletion in ccRCC cells revealed aberrant and reduced nucleosome compaction and chromatin association of the key replication proteins minichromosome maintenance complex component (MCM7) and DNA polymerase δ hindering replication fork progression, and failure to load lens epithelium-derived growth factor and the Rad51 homologous recombination repair factor at DNA breaks. Consistent with these data, we observe chromosomal breakpoint locations are biased away from H3K36me3 sites in SETD2 wild-type ccRCCs relative to tumours with bi-allelic SETD2 aberrations and that H3K36me3-negative ccRCCs display elevated DNA damage in vivo. These data suggest a role for SETD2 in maintaining genome integrity through nucleosome stabilization, suppression of replication stress and the coordination of DNA repair.

摘要

明确产生肿瘤内异质性和分支进化的机制,可能会启发限制肿瘤多样性和适应性的新型治疗方法。SETD2(含三体结构域的Su(var)、zeste增强子2)在活跃转录位点将组蛋白-3赖氨酸-36(H3K36me3)三甲基化,在包括透明细胞肾细胞癌(ccRCC)在内的多种肿瘤类型中发生突变。在ccRCC的空间分离区域已鉴定出不同的SETD2突变,这表明存在肿瘤内异质性。在本研究中,我们通过综合生物信息学和功能基因组学方法探讨了SETD2功能丧失的后果。我们发现双等位基因SETD2畸变与ccRCC中的微卫星不稳定性无关。ccRCC细胞中SETD2的缺失揭示了关键复制蛋白微小染色体维持复合物组分(MCM7)和DNA聚合酶δ的异常核小体压缩和染色质结合减少,这阻碍了复制叉的进展,并且无法在DNA断裂处加载晶状体上皮衍生生长因子和Rad51同源重组修复因子。与这些数据一致,我们观察到相对于具有双等位基因SETD2畸变的肿瘤,在SETD2野生型ccRCC中染色体断点位置偏向远离H3K36me3位点,并且H3K36me3阴性的ccRCC在体内显示出更高的DNA损伤。这些数据表明SETD2通过核小体稳定、复制应激抑制和DNA修复的协调在维持基因组完整性中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/226c/4800066/0d264b06a1fa/onc201524f1.jpg

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