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胚胎发生和成年小鼠中 MDM2 E3 活性的差异需求。

Differential requirements for MDM2 E3 activity during embryogenesis and in adult mice.

机构信息

The Francis Crick Institute, London NW1 1AT, United Kingdom.

Cancer Research UK Beatson Institute, Glasgow G61 1BD, United Kingdom.

出版信息

Genes Dev. 2021 Jan 1;35(1-2):117-132. doi: 10.1101/gad.341875.120. Epub 2020 Dec 17.

Abstract

The p53 tumor suppressor protein is a potent activator of proliferative arrest and cell death. In normal cells, this pathway is restrained by p53 protein degradation mediated by the E3-ubiquitin ligase activity of MDM2. Oncogenic stress releases p53 from MDM2 control, so activating the p53 response. However, many tumors that retain wild-type p53 inappropriately maintain the MDM2-p53 regulatory loop in order to continuously suppress p53 activity. We have shown previously that single point mutations in the human MDM2 RING finger domain prevent the interaction of MDM2 with the E2/ubiquitin complex, resulting in the loss of MDM2's E3 activity without preventing p53 binding. Here, we show that an analogous mouse MDM2 mutant (MDM2 I438K) restrains p53 sufficiently for normal growth but exhibits an enhanced stress response in vitro. In vivo constitutive expression of MDM2 I438K leads to embryonic lethality that is rescued by p53 deletion, suggesting MDM2 I438K is not able to adequately control p53 function through development. However, the switch to I438K expression is tolerated in adult mice, sparing normal cells but allowing for an enhanced p53 response to DNA damage. Viewed as a proof of principle model for therapeutic development, our findings support an approach that would inhibit MDM2 E3 activity without preventing MDM2/p53 binding as a promising avenue for development of compounds to activate p53 in tumors with reduced on-target toxicities.

摘要

抑癌蛋白 p53 是细胞增殖抑制和细胞死亡的有效激活剂。在正常细胞中,p53 蛋白的降解受到 MDM2 E3 泛素连接酶活性的调控,从而抑制了这一通路。致癌应激会使 p53 摆脱 MDM2 的控制,从而激活 p53 反应。然而,许多保留野生型 p53 的肿瘤会通过持续抑制 p53 活性,来保持 MDM2-p53 调节环的完整性。我们之前已经证明,人 MDM2 RING 指结构域的单点突变会阻止 MDM2 与 E2/泛素复合物的相互作用,从而导致 MDM2 的 E3 活性丧失,而不影响 p53 的结合。在这里,我们展示了一种类似的鼠 MDM2 突变体(MDM2 I438K)足以限制 p53 的正常生长,但在体外表现出增强的应激反应。体内组成型表达 MDM2 I438K 会导致胚胎致死,而 p53 缺失可挽救,这表明 MDM2 I438K 无法通过发育来充分控制 p53 功能。然而,在成年小鼠中,I438K 表达的转换是可以耐受的,从而使正常细胞免受影响,但能增强对 DNA 损伤的 p53 反应。从治疗开发的原理模型来看,我们的发现支持了一种抑制 MDM2 E3 活性而不阻止 MDM2/p53 结合的方法,这可能是开发化合物激活肿瘤中 p53 的有前途的途径,同时降低了靶毒性。

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