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p53及其突变体在从干性到致癌作用的艰难历程中

p53 and its mutants on the slippery road from stemness to carcinogenesis.

作者信息

Molchadsky Alina, Rotter Varda

机构信息

Department of Molecular Cell Biology, Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

Carcinogenesis. 2017 Apr 1;38(4):347-358. doi: 10.1093/carcin/bgw092.

Abstract

Normal development, tissue homeostasis and regeneration following injury rely on the proper functions of wide repertoire of stem cells (SCs) persisting during embryonic period and throughout the adult life. Therefore, SCs employ robust mechanisms to preserve their genomic integrity and avoid heritage of mutations to their daughter cells. Importantly, propagation of SCs with faulty DNA as well as dedifferentiation of genomically altered somatic cells may result in derivation of cancer SCs, which are considered to be the driving force of the tumorigenic process. Multiple experimental evidence suggest that p53, the central tumor suppressor gene, plays a critical regulatory role in determination of SCs destiny, thereby eliminating damaged SCs from the general SC population. Notably, mutant p53 proteins do not only lose the tumor suppressive function, but rather gain new oncogenic function that markedly promotes various aspects of carcinogenesis. In this review, we elaborate on the role of wild type and mutant p53 proteins in the various SCs types that appear under homeostatic conditions as well as in cancer. It is plausible that the growing understanding of the mechanisms underlying cancer SC phenotype and p53 malfunction will allow future optimization of cancer therapeutics in the context of precision medicine.

摘要

正常发育、组织稳态以及损伤后的再生依赖于胚胎期及成年期持续存在的多种干细胞(SCs)的正常功能。因此,干细胞采用强大的机制来维持其基因组完整性,并避免将突变遗传给子代细胞。重要的是,具有缺陷DNA的干细胞增殖以及基因组改变的体细胞去分化可能导致癌症干细胞的产生,而癌症干细胞被认为是肿瘤发生过程的驱动力。多项实验证据表明,核心肿瘤抑制基因p53在决定干细胞命运方面起着关键的调节作用,从而从普通干细胞群体中清除受损的干细胞。值得注意的是,突变型p53蛋白不仅失去了肿瘤抑制功能,反而获得了新的致癌功能,显著促进了癌症发生的各个方面。在这篇综述中,我们阐述了野生型和突变型p53蛋白在稳态条件下以及癌症中出现的各种干细胞类型中的作用。越来越深入地了解癌症干细胞表型和p53功能失调的潜在机制,有望在精准医学背景下实现未来癌症治疗的优化,这似乎是合理的。

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