首页> 外文期刊>International Journal of Cancer =: Journal International du Cancer >Degradation of HPV20E6 by p53: Delta Np63 alpha and mutant p53R248W protect the wild type p53 mediated caspase-degradation.
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Degradation of HPV20E6 by p53: Delta Np63 alpha and mutant p53R248W protect the wild type p53 mediated caspase-degradation.

机译:HPV20E6降解P53:DeltaNP63α和突变体P53R248W保护野生型P53介导的胱天蛋白降解。

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摘要

The E6 and E7 proteins of human papillomaviruses (HPV) play a crucial role in the pathogenesis of malignant tumors. E6 protein of high-risk mucosal papillomaviruses targets a number of proteins for proteosomal degradation through complex formation with ubiquitin ligase E6AP. These proteins include, amongst others, p53, paxillin and PDZ-domain proteins e.g. Dlg and MAGUK. The mechanism by which the E6 protein of cutaneous HPV types interacts with cellular proteins to induce either benign or malignant cutaneous lesions, has not been elucidated, although extensive ultraviolet exposure and mutated p53 (hot-spot mutations) are known to be associated with non-melanoma skin cancer. We demonstrate two mechanisms in which HPV20E6 may be involved in the infected cell. One pathway is the wtp53 mediated degradation of HPV20E6 through caspase-3. Mutated p53R248W and Delta Np63 alpha, as well as other unknown proteins involved in proteosome-dependent degradation, convey a protective effect on HPV20E6 under these conditions. This unveils a remarkable opposite regulation to the well-known mechanism of E6-E6AP mediated degradation of p53 for mucosal HPV types. In a second interaction, ectopically expressed HPV20E6 induces cleavage of procaspase-3 to active caspase-3. We demonstrate, in addition, in vivo binding of HPV20E6 to the intermediate filament vimentin.
机译:人乳头瘤病毒(HPV)的E6和E7蛋白在恶性肿瘤发病机制中起着至关重要的作用。高危粘膜乳头瘤病毒的E6蛋白靶向许多蛋白质通过用遍突蛋白连接酶E6ap复杂的形成蛋白质转化蛋白。这些蛋白质包括,其中P53,帕雪林和PDZ结构域蛋白为例如。 DLG和Maguk。皮肤HPV类型的E6蛋白与细胞蛋白相互作用以诱导良性或恶性皮肤病变的机制尚未阐明,尽管已知广泛的紫外线暴露和突变P53(热点突变)与非 - 黑色素瘤皮肤癌。我们证明了两种机制,其中HPV20E6可以参与受感染的细胞。一种途径是WTP53通过Caspase-3的HPV20E6介导的降解。突变的P53R248W和Delta NP63α以及其他未知的蛋白质,参与蛋白质体依赖性降解,在这些条件下对HPV20E6传达了保护作用。这对E6-E6AP介导的P53介导的粘膜HPV类型的介导的致癌机制推出了显着的相反规范。在第二次相互作用中,异位表达的HPV20E6诱导ProCaspase-3的切割至活性Caspase-3。另外,我们证明了HPV20E6的体内结合到中间细丝Vimentin。

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