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乳腺癌基因GATA3的功能获得性和功能丧失性突变导致不同的药物敏感性。

Gain- and Loss-of-Function Mutations in the Breast Cancer Gene GATA3 Result in Differential Drug Sensitivity.

作者信息

Mair Barbara, Konopka Tomasz, Kerzendorfer Claudia, Sleiman Katia, Salic Sejla, Serra Violeta, Muellner Markus K, Theodorou Vasiliki, Nijman Sebastian M B

机构信息

CeMM Research Center for Molecular Medicine of the Austrian Academy of Sciences, Vienna, Austria.

Ludwig Institute for Cancer Research, Nuffield Department of Clinical Medicine, University of Oxford, Oxford, United Kingdom.

出版信息

PLoS Genet. 2016 Sep 2;12(9):e1006279. doi: 10.1371/journal.pgen.1006279. eCollection 2016 Sep.

Abstract

Patterns of somatic mutations in cancer genes provide information about their functional role in tumourigenesis, and thus indicate their potential for therapeutic exploitation. Yet, the classical distinction between oncogene and tumour suppressor may not always apply. For instance, TP53 has been simultaneously associated with tumour suppressing and promoting activities. Here, we uncover a similar phenomenon for GATA3, a frequently mutated, yet poorly understood, breast cancer gene. We identify two functional classes of frameshift mutations that are associated with distinct expression profiles in tumours, differential disease-free patient survival and gain- and loss-of-function activities in a cell line model. Furthermore, we find an estrogen receptor-independent synthetic lethal interaction between a GATA3 frameshift mutant with an extended C-terminus and the histone methyltransferases G9A and GLP, indicating perturbed epigenetic regulation. Our findings reveal important insights into mutant GATA3 function and breast cancer, provide the first potential therapeutic strategy and suggest that dual tumour suppressive and oncogenic activities are more widespread than previously appreciated.

摘要

癌症基因中的体细胞突变模式提供了有关它们在肿瘤发生中功能作用的信息,从而表明它们在治疗应用中的潜力。然而,癌基因和肿瘤抑制基因之间的经典区分可能并不总是适用。例如,TP53已同时与肿瘤抑制和促进活性相关联。在这里,我们发现了GATA3的类似现象,GATA3是一种在乳腺癌中经常发生突变但了解甚少的基因。我们鉴定出两种功能性移码突变类别,它们与肿瘤中不同的表达谱、无病患者的不同生存率以及细胞系模型中的功能获得和功能丧失活性相关。此外,我们发现具有延长C末端的GATA3移码突变体与组蛋白甲基转移酶G9A和GLP之间存在雌激素受体非依赖性合成致死相互作用,表明表观遗传调控受到干扰。我们的研究结果揭示了对突变型GATA3功能和乳腺癌的重要见解,提供了首个潜在的治疗策略,并表明双重肿瘤抑制和致癌活性比以前认识到的更为普遍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac55/5010247/83a04f18c805/pgen.1006279.g001.jpg

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