首页> 外文期刊>The Journal of Biochemistry >PPM1D430, a Novel Alternative Splicing Variant of the Human PPM1D, can Dephosphorylate p53 and Exhibits Specific Tissue Expression.
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PPM1D430, a Novel Alternative Splicing Variant of the Human PPM1D, can Dephosphorylate p53 and Exhibits Specific Tissue Expression.

机译:PPM1D430,人PPM1D的新型替代剪接变体,可以使p53磷酸化并表现出特定的组织表达。

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摘要

PPM1D is a PPM1 type protein phosphatase and is induced in response to DNA damage. PPM1D-deficient mice show defects in spermatogenesis and lymphoid cell functions but the mechanisms underlying these phenotypes remain unknown. In our current study, we identify and characterize an alternative splicing variant (denoted PPM1D430) of human PPM1D at both the mRNA and protein level. PPM1D430 comprises the common 420 residues of the known PPM1D protein (PPM1D605) and contains a stretch of PPM1D430-specific 10 amino acids. Semi-quantitative reverse transcription-polymerase chain reaction (RT-PCR) analysis revealed that PPM1D430 mRNA is also induced in response to the genotoxic stress in a p53-dependent manner. In vitro phosphatase analysis and PPM1D430-specific RNA interference analysis further indicated that PPM1D430 can dephosphorylate Ser15 of human p53 both in vitro and in vivo. On the other hand, expression profiling of this gene by RT-PCR analysis of a human tissue cDNA panel revealed that PPM1D430 is expressed exclusively in testes and in leucocytes whereas PPM1D605 is ubiquitous. In addition, PPM1D430 shows a different subcellular localization pattern and protein stability when compared with PPM1D605 under some conditions. Our current findings thus suggest that PPM1D430 may exert specific functions in immune response and/or spermatogenesis.
机译:PPM1D是PPM1类型的蛋白质磷酸酶,可响应DNA损伤而被诱导。 PPM1D缺陷小鼠表现出精子发生和淋巴样细胞功能的缺陷,但这些表型的潜在机制仍不清楚。在我们目前的研究中,我们在mRNA和蛋白质水平上鉴定和表征人PPM1D的另一个剪接变体(表示为PPM1D430)。 PPM1D430包含已知PPM1D蛋白(PPM1D605)的420个常见残基,并包含一段PPM1D430特异的10个氨基酸。半定量逆转录-聚合酶链反应(RT-PCR)分析显示,PPM1D430 mRNA也以p53依赖性方式响应遗传毒性胁迫而被诱导。体外磷酸酶分析和PPM1D430特异性RNA干扰分析进一步表明,PPM1D430可以在体内和体外使人p53的Ser15磷酸化。另一方面,通过对人体组织cDNA板的RT-PCR分析对该基因的表达谱显示,PPM1D430仅在睾丸和白细胞中表达,而PPM1D605普遍存在。此外,与PPM1D605在某些条件下相比,PPM1D430显示出不同的亚细胞定位模式和蛋白质稳定性。因此,我们目前的发现表明PPM1D430可能在免疫反应和/或精子发生中发挥特定功能。

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