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Role of Otubain 1 in the p53 Pathway

Role of Otubain 1 in the p53 Pathway
Otubain 1 在 p53 通路中的作用
批准号:
8634742
负责人:
Mu-Shui Dai
金额:
$30.87万
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-05-01 至 2017-03-31

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中文摘要
翻译
描述(由申请人提供):p53肿瘤抑制因子在维持基因组完整性和防止肿瘤发生方面起着关键作用。MDM2是一种环指泛素E3连接酶,在p53水平的调节中起主要作用。MDM2泛素化p53并靶向它进行蛋白酶体介导的降解。MDMX是MDM2的同系物,在控制p53中也起着不可或缺的作用。MDMX协助MDM2抑制p53活性和水平,而MDM2介导MDMX泛素化和降解,以响应DNA损伤。由于MDM2可能也包括MDMX可以被p53诱导转录,它们形成了p53-MDM2-MDMX反馈回路。这种循环导致细胞中这些蛋白质的正常稳态。最近的研究还表明,p53-MDM2-MDMX环是通过泛素特异性蛋白酶(USP)家族的几种去泛素化酶(DUBs)的拮抗来调节的。USP7去泛素化并稳定所有三个参与者,而USP10只去泛素化p53, USP2a去泛素化MDM2和MDMX,为p53通路提供了另一层精确和动态的调控。然而,这种循环是否受USP家族以外的dub调控尚不清楚。我们最近发现含有OTU结构域的蛋白酶(OTU)家族成员otubone (Otub1)是p53-MDM2-MDMX环的一种新的调节因子。我们发现,过表达Otub1可逆转mdm2介导的p53泛素化,稳定细胞中的p53,并显著诱导p53依赖性凋亡和细胞生长抑制。过表达Otub1显性阴性突变体或siRNA消融内源性Otub1显著减弱p53对DNA损伤的激活。这些结果表明Otub1在p53信号的调控中起着至关重要的作用。为了进一步了解这种调控,我们将研究Otub1在Aim 1中调控p53通路的分子和生化机制。由于Otub1也抑制MDMX泛素化并稳定MDMX在细胞中,有趣的是,Otub1稳定的MDMX是高度磷酸化的,我们将进一步表征Otub1调控MDMX的机制及其在Aim 2中的意义。最后,由于Otub1在细胞培养系统中显著诱导p53依赖性细胞生长抑制,我们将对其进行研究
英文摘要
DESCRIPTION (provided by applicant): The p53 tumor suppressor plays a key role in maintaining genomic integrity and preventing tumorigenesis. MDM2, a RING-finger ubiquitin E3 ligase, plays a major role in the regulation of p53 levels. MDM2 ubiquitinates p53 and targets it for proteasome-mediated degradation. MDMX, an MDM2 homolog, also plays an indispensible role in controlling p53. MDMX assists MDM2 in suppressing p53 activity and levels, while MDM2 mediates MDMX ubiquitination and degradation in response to DNA damage. As MDM2, and possibly MDMX as well, can be transcription ally induced by p53, they form a p53-MDM2-MDMX feedback loop. This loop ensues a normal homeostasis of these proteins in cells. Recent studies have also shown that the p53-MDM2-MDMX loop is regulated via deubiquitination by counteraction of several deubiquitinating enzymes (DUBs) from the ubiquitin specific protease (USP) family. USP7 deubiquitinates and stabilizes all the three players, whereas USP10 deubiquitinates p53 only and USP2a deubiquitinates MDM2 and MDMX, providing another layer of precise and dynamic regulation of the p53 pathway. However, whether this loop is regulated by DUBs other than USP family is not known. We recently discovered that an OTU-domain containing protease (OTU) family member, Otubain 1 (Otub1), as a novel regulator of the p53-MDM2-MDMX loop. We show that over expression of Otub1 reverses MDM2-mediated p53 ubiquitination, stabilize p53 in cells, and drastically induce p53- dependent apoptosis and cell growth inhibition. Over expression of a dominant-negative mutant of Otub1 or ablation of endogenous Otub1 by siRNA significantly attenuated p53 activation in response to DNA damage. These results suggest a crucial role for Otub1 in the regulation of p53 signaling. To further gain insight into the regulation, we will investigate the molecular and biochemical mechanisms underlying the role of Otub1 in regulating the p53 pathway in Aim 1. As Otub1 also suppresses MDMX ubiquitination and stabilizes MDMX in cells and, intriguingly, the stabilized MDMX by Otub1 is highly phosphorylated, we will further characterize the mechanism underlying Otub1 regulation of MDMX as well as its significance in Aim 2. Finally, as Otub1 drastically induces p53-dependent cell growth inhibition in cell culture system, we will examine if Otub1 suppresses tumor growth in vivo using mouse xenograft and knockout models in Aim 3. We will examine whether Otub1 expression is deregulated and/or the Otub1 gene is mutated in human cancers. We will also examine the mechanism underlying the Otub1 regulation of p53 signaling in response to DNA damage. Completion of these aims would not only further our understanding of how p53 function is properly regulated through dynamic ubiquitination and deubiquitination and how deregulation of this dynamics contributes to tumorigenesis, but also aid the search for novel cancer therapeutics to re-activate p53 in wild-type p53 containing cancers.
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