Nagpal Isha, Yuan Zhi-Min
John B. Little Center for Radiation Sciences, Harvard T. H. Chan School of Public Health, Boston, MA, United States.
Front Cell Dev Biol. 2021 Nov 23;9:775312. doi: 10.3389/fcell.2021.775312. eCollection 2021.
Apart from mutations in the gene, p53 functions can be alternatively compromised by a decrease in nuclear p53 protein levels or activities. In accordance, enhanced p53 protein turnover due to elevated expression of the critical p53 E3 ligase MDM2 or MDM2/MDMX is found in many human cancers. Likewise, the HPV viral E6 protein-mediated p53 degradation critically contributes to the tumorigenesis of cervical cancer. In addition, growth-promoting signaling-induced cell proliferation is accompanied by p53 downregulation. Animal studies have also shown that loss of p53 is essential for oncogenes to drive malignant transformation. The close association between p53 downregulation and carcinogenesis implicates a critical role of basally expressed p53. In accordance, available evidence indicates that a reduced level of basal p53 is usually associated with disruption of homeostasis, suggesting a homeostatic function mediated by basal p53. However, basally expressed p53 under non-stress conditions is maintained at a relatively low abundance with little transcriptional activity, raising the question of how basal p53 could protect homeostasis. In this review, we summarize the findings pertinent to basal p53-mediated activities in the hope of developing a model in which basally expressed p53 functions as a barrier to anabolic metabolism to preserve homeostasis. Future investigation is necessary to characterize basal p53 functionally and to obtain an improved understanding of p53 homeostatic function, which would offer novel insight into the role of p53 in tumor suppression.
除了该基因发生突变外,p53的功能还可能因细胞核p53蛋白水平或活性降低而受到影响。相应地,在许多人类癌症中都发现,关键的p53 E3连接酶MDM2或MDM2/MDMX表达升高导致p53蛋白周转加快。同样,人乳头瘤病毒(HPV)的E6蛋白介导的p53降解对宫颈癌的发生发展起着关键作用。此外,促进生长的信号传导诱导的细胞增殖伴随着p53的下调。动物研究还表明,p53缺失对于癌基因驱动恶性转化至关重要。p53下调与致癌作用之间的密切关联暗示了基础表达的p53的关键作用。相应地,现有证据表明基础p53水平降低通常与内环境稳态破坏有关,提示基础p53介导了一种内环境稳态功能。然而,非应激条件下基础表达的p53维持在相对较低的丰度且转录活性很小,这就引发了基础p53如何保护内环境稳态的问题。在本综述中,我们总结了与基础p53介导的活性相关的研究结果,希望建立一个模型,其中基础表达的p53作为合成代谢的屏障来维持内环境稳态。未来有必要对基础p53进行功能表征,并更好地理解p53的内环境稳态功能,这将为p53在肿瘤抑制中的作用提供新的见解。