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首页> 外文期刊>Molecular and Cellular Biology >Multiple Lysine Mutations in the C-Terminal Domain of p53 Interfere with MDM2-Dependent Protein Degradation and Ubiquitination
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Multiple Lysine Mutations in the C-Terminal Domain of p53 Interfere with MDM2-Dependent Protein Degradation and Ubiquitination

机译:p53 C末端域中的多个赖氨酸突变干扰MDM2依赖性蛋白降解和泛素化。

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摘要

To investigate the effect of mutations in the p53 C-terminal domain on MDM2-mediated degradation, we introduced single and multiple point mutations into a human p53 cDNA at four putative acetylation sites (amino acid residues 372, 373, 381, and 382). Substitution of all four lysine residues by alanines (the A4 mutant) and single lysine-to-alanine substitutions were functional in sequence-specific DNA binding and transactivation; however, the A4 mutant protein was resistant to MDM2-mediated degradation, whereas the single lysine substitutions were not. Although the A4 mutant protein and the single lysine substitutions both bound MDM2 reasonably well, the single lysine substitutions underwent normal MDM2-dependent ubiquitination, whereas the A4 protein was inefficiently ubiquitinated. In addition, the A4 mutant protein was found in the cytoplasm as well as in the nucleus of a subpopulation of cells, unlike wild-type p53, which is mostly nuclear. The partially cytoplasmic distribution of A4 mutant protein was not due to a defect in nuclear import because inhibition of nuclear export by leptomycin B resulted in nuclear accumulation of the protein. Taken together, the data suggest that mutations in the putative acetylation sites of the p53 C-terminal domain interfere with ubiquitination, thereby regulating p53 degradation.
机译:为了研究p53 C末端结构域突变对MDM2介导的降解的影响,我们在四个假定的乙酰化位点(氨基酸残基372、373、381和382)处将单点突变和多点突变引入人p53 cDNA中。丙氨酸取代所有四个赖氨酸残基(A4突变体)和单个赖氨酸-丙氨酸取代在序列特异性DNA结合和反式激活中起作用。但是,A4突变蛋白对MDM2介导的降解具有抗性,而单个赖氨酸取代则不具有。尽管A4突变蛋白和单个赖氨酸取代都很好地结合了MDM2,但是单个赖氨酸取代经历了正常的MDM2依赖性泛素化,而A4蛋白却没有被有效地泛素化。另外,与野生型p53(主要为核)不同,在细胞亚群的细胞质和细胞核中也发现了A4突变蛋白。 A4突变蛋白的部分细胞质分布不是由于核输入缺陷引起的,因为瘦霉素B对核输出的抑制导致该蛋白的核积累。两者合计,数据表明p53 C末端域的假定的乙酰化位点中的突变会干扰泛素化,从而调节p53的降解。

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