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The role of p53 in developmental syndromes

机译:p53在发育综合征中的作用

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摘要

While it is well appreciated that loss of the p53 tumor suppressor protein promotes cancer, growing evidence indicates that increased p53 activity underlies the developmental defects in a wide range of genetic syndromes. The inherited or de novo mutations that cause these syndromes affect diverse cellular processes, such as ribosome biogenesis, DNA repair, and centriole duplication, and analysis of human patient samples and mouse models demonstrates that disrupting these cellular processes can activate the p53 pathway. Importantly, many of the developmental defects in mouse models of these syndromes can be rescued by loss of p53, indicating that inappropriate p53 activation directly contributes to their pathogenesis. A role for p53 in driving developmental defects is further supported by the observation that mouse strains with broad p53 hyperactivation, due to mutations affecting p53 pathway components, display a host of tissue-specific developmental defects, including hematopoietic, neuronal, craniofacial, cardiovascular, and pigmentation defects. Furthermore, germline activating mutations in TP53 were recently identified in two human patients exhibiting bone marrow failure and other developmental defects. Studies in mice suggest that p53 drives developmental defects by inducing apoptosis, restraining proliferation, or modulating other developmental programs in a cell type-dependent manner. Here, we review the growing body of evidence from mouse models that implicates p53 as a driver of tissue-specific developmental defects in diverse genetic syndromes.
机译:虽然众所周知,p53肿瘤抑制蛋白的丧失会促进癌症,但越来越多的证据表明,p53活性的提高是广泛遗传综合征中发育缺陷的基础。导致这些综合征的遗传或从头突变会影响多种细胞过程,如核糖体生物发生,DNA修复和中心粒复制,对人类患者样品和小鼠模型的分析表明,破坏这些细胞过程可以激活p53途径。重要的是,这些综合征的小鼠模型中的许多发育缺陷可以通过p53的丢失来挽救,这表明不适当的p53激活直接导致了其发病机理。 p53在驱动发育缺陷中的作用进一步得到了以下观察结果的支持:由于影响p53途径成分的突变,具有广泛p53过度活化的小鼠品系显示出许多组织特异性发育缺陷,包括造血,神经元,颅面,心血管和色素沉着缺陷。此外,最近在两名表现出骨髓衰竭和其他发育缺陷的人类患者中发现了TP53中的种系激活突变。小鼠研究表明,p53通过诱导凋亡,抑制增殖或以细胞类型依赖性方式调节其他发育程序来驱动发育缺陷。在这里,我们从小鼠模型中回顾了越来越多的证据,这些证据暗示p53是多种遗传综合症中组织特异性发育缺陷的驱动因素。

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