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烟酰胺腺嘌呤二核苷酸(NAD(P)H)醌氧化还原酶保护 TAp63γ免于蛋白酶体降解,并调节 TAp63γ 依赖性生长停滞。

NAD(P)H quinone oxidoreductase protects TAp63gamma from proteasomal degradation and regulates TAp63gamma-dependent growth arrest.

机构信息

Felsenstein Medical Research Center, Beilinson Hospital, Sackler School of Medicine, Tel Aviv University, Petah-Tikva, Israel.

出版信息

PLoS One. 2010 Jun 30;5(6):e11401. doi: 10.1371/journal.pone.0011401.

Abstract

BACKGROUND

p63 is a member of the p53 transcription factor family. p63 is expressed from two promoters resulting in proteins with opposite functions: the transcriptionally active TAp63 and the dominant-negative DeltaNp63. Similar to p53, the TAp63 isoforms induce cell cycle arrest and apoptosis. The DeltaNp63 isoforms are dominant-negative variants opposing the activities of p53, TAp63 and TAp73. To avoid unnecessary cell death accompanied by proper response to stress, the expression of the p53 family members must be tightly regulated. NAD(P)H quinone oxidoreductase (NQO1) has recently been shown to interact with and inhibit the degradation of p53. Due to the structural similarities between p53 and p63, we were interested in studying the ability of wild-type and polymorphic, inactive NQO1 to interact with and stabilize p63. We focused on TAp63gamma, as it is the most potent transcription activator and it is expected to have a role in tumor suppression.

PRINCIPAL FINDINGS

We show that TAp63gamma can be degraded by the 20S proteasomes. Wild-type but not polymorphic, inactive NQO1 physically interacts with TAp63gamma, stabilizes it and protects it from this degradation. NQO1-mediated TAp63gamma stabilization was especially prominent under stress. Accordingly, we found that downregulation of NQO1 inhibits TAp63gamma-dependant p21 upregulation and TAp63gamma-induced growth arrest stimulated by doxorubicin.

CONCLUSIONS/SIGNIFICANCE: Our report is the first to identify this new mechanism demonstrating a physical and functional relationship between NQO1 and the most potent p63 isoform, TAp63gamma. These findings appoint a direct role for NQO1 in the regulation of TAp63gamma expression, especially following stress and may therefore have clinical implications for tumor development and therapy.

摘要

背景

p63 是 p53 转录因子家族的成员。p63 由两个启动子表达,产生具有相反功能的蛋白质:转录激活的 TAp63 和显性负 DeltaNp63。与 p53 相似,TAp63 同工型诱导细胞周期停滞和细胞凋亡。DeltaNp63 同工型是与 p53、TAp63 和 TAp73 的活性相反的显性负变体。为了避免伴随适当应激反应的不必要的细胞死亡,p53 家族成员的表达必须受到严格调控。NAD(P)H 醌氧化还原酶 (NQO1) 最近被证明与 p53 相互作用并抑制其降解。由于 p53 和 p63 之间的结构相似性,我们有兴趣研究野生型和多态性、无活性的 NQO1 与 p63 相互作用并稳定 p63 的能力。我们专注于 TAp63gamma,因为它是最强的转录激活剂,预计它在肿瘤抑制中具有作用。

主要发现

我们表明 TAp63gamma 可被 20S 蛋白酶体降解。野生型而非多态性、无活性的 NQO1 与 TAp63gamma 物理相互作用,稳定它并防止其降解。NQO1 介导的 TAp63gamma 稳定在应激下尤为明显。因此,我们发现下调 NQO1 抑制了阿霉素诱导的 TAp63gamma 依赖性 p21 上调和 TAp63gamma 诱导的生长停滞。

结论/意义:我们的报告首次确定了这种新的机制,该机制证明了 NQO1 与最强效的 p63 同工型 TAp63gamma 之间存在物理和功能关系。这些发现指定了 NQO1 在 TAp63gamma 表达调控中的直接作用,特别是在应激后,因此可能对肿瘤发生和治疗具有临床意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ba3/2894944/3c7084b192f9/pone.0011401.g001.jpg

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