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A crucial role for bone morphogenetic protein-Smad1 signalling in the DNA damage response

机译:骨形态发生蛋白Smad1信号在DNA损伤反应中的关键作用

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DNA damage and the elicited cellular response underlie the etiology of tumorigenesis and ageing. Yet, how this response integrates inputs from cells' environmental cues remains underexplored. Here we report that the BMP-Smad1 pathway, which is essential for embryonic development and tissue homeostasis, has an important role in the DNA damage response and oncogenesis. On genotoxic stress, Atm phosphorylates BMPs-activated Smad1 in the nucleus on S239, which disrupts Smad1 interaction with protein phosphatase PPM1A, leading to enhanced activation and upregulation of Smad1. Smad1 then interacts with p53 and inhibits Mdm2-mediated p53 ubiquitination and degradation to regulate cell proliferation and survival. Enhanced Smad1 S239 phosphorylation, and Smad1 mutations causing S239 substitution were detected in oesophageal and gastric cancer samples, respectively. These findings suggest that BMP-Smad1 signalling participates in the DNA damage response via the Atm-p53 pathway, thus providing a molecular mechanism whereby BMP-Smad1 loss-of-function leads to tumorigenesis, for example, juvenile polyposis and Cowden syndromes.. ? 2012 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:DNA损伤和引起的细胞反应是肿瘤发生和衰老的病因学基础。然而,这种反应如何整合细胞环境线索的输入仍未得到充分研究。在这里我们报告BMP-Smad1通路,这对胚胎发育和组织稳态至关重要,在DNA损伤反应和肿瘤发生中具有重要作用。在遗传毒性胁迫下,Atm会磷酸化S239核中BMPs激活的Smad1,从而破坏Smad1与蛋白磷酸酶PPM1A的相互作用,从而导致Smad1的激活和上调。然后,Smad1与p53相互作用并抑制Mdm2介导的p53泛素化和降解,从而调节细胞增殖和存活。分别在食道和胃癌样品中检测到增强的Smad1 S239磷酸化和导致S239取代的Smad1突变。这些发现表明,BMP-Smad1信号通过Atm-p53途径参与DNA损伤应答,从而提供了一种分子机制,由此BMP-Smad1的功能丧失导致了肿瘤的发生,例如,青少年息肉病和Cowden综合征。 2012自然出版集团,麦克米伦出版社有限公司的一个部门。版权所有。

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