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HLA-B-associated transcript 3 (Bat3) stabilizes and activates p53 in a HAUSP-dependent manner

机译:HLA-B相关的转录物3(BAT3)以HAUSP依赖性方式稳定并激活P53

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摘要

The p53 pathway is a highly complex signaling network including several key regulators. HAUSP is a critical component of the p53 pathway acting as a deubiquitinase for both p53 and its key repressor Mdm2. Here, we identified a novel HAUSP-interacting protein, HLA-B-associated transcript 3 (Bat3) and found it to be capable of inducing p53 stabilization and activation via a HAUSP-dependent mechanism, resulting in cell growth inhibition. Surprisingly, the deubiquitylating enzymatic activity of HAUSP was not required for this phenomenon. Co-immunoprecipitation showed that p53 coexisted in a complex with Bat3 and HAUSP in vivo, and HAUSP may serve as a binding mediator to enhance the interaction between p53 and Bat3. Further studies revealed that formation of this three-protein complex interfered with the binding of p53 to its proteasome receptor S5a and promoted the accumulation of p53 in nucleus. Notably, Mdm2 protein abundance is also regulated by Bat3 in the presence of HAUSP. Overexpression of Bat3 and HAUSP increases Mdm2 protein levels without influencing the p53-Mdm2 interaction and Mdm2-mediated p53 ubiquitination, indicating that Bat3-HAUSP-mediated protein stabilization is not specific to p53 and different mechanisms may be involved in Bat3-mediated regulation of p53-Mdm2 pathway. Together, our study unravels a novel mechanism by which p53 is stabilized and activated by HAUSP-mediated interaction with Bat3 and implies that Bat3 might function as a tumor suppressor through the stabilization of p53.
机译:P53途径是一种高度复杂的信令网络,包括几个关键调节器。 Hausp是P53途径的关键组分,其作为P53及其关键抑制器MDM2的氘代酶。在这里,我们鉴定了一种新的Hausp相互作用蛋白HLA-B相关转录物3(BAT3),发现它能够通过HAUSP依赖性机制诱导P53稳定和活化,导致细胞生长抑制。令人惊讶的是,这种现象不需要Hausp的脱硫酶活性。共免疫沉淀显示P53在体内与BAT3和Hausp共存的p53,并且Hausp可以用作结合介体,以增强p53和BAT3之间的相互作用。进一步的研究表明,形成这种三种蛋白质复合物干扰p53与其蛋白酶体受体S5a的结合,并促进了核中p53的积累。值得注意的是,MDM2蛋白质丰度也通过BAT3在HAUSP存在下调节。 BAT3和HAUS的过度表达增加了MDM2蛋白质水平,而不会影响P53-MDM2相互作用和MDM2介导的P53泛素化,表明BAT3-HAUSP介导的蛋白质稳定化不特异于P53,并且可以参与BAT3介导的P53介导的调节的不同机制-mdm2途径。我们的研究在一起,通过Hausp介导的与BAT3的介导的相互作用稳定并激活P53,并意味着BAT3可以通过P53的稳定来用作肿瘤抑制剂的稳定和激活的新机制。

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