人乳腺肿瘤T47D细胞系中多种p53蛋白同工型及与热休克蛋白Hsp70和Hsp90寡聚复合物的形成

J K Selkirk, B A Merrick, B L Stackhouse, C He
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摘要

在人乳腺肿瘤细胞系中至少观察到11种p53蛋白同工型。T47D。对比33P和35S掺入分析显示,P53同工异构体在细胞质和核室中的分布相同,尽管各同工异构体之间的磷酸化不相等,且最基本的P53物种未被磷酸化。采用免疫沉淀法结合p53单克隆抗体和热休克蛋白Hsp70、Hsp90单克隆抗体,结合二维凝胶电泳分析,在几种Hsp70和Hsp90中观察到T47D p53蛋白低聚物。p53/Hsp70/Hsp90聚集体在核易位后解离。单克隆抗体对Hsp70和Hsp90的免疫沉淀显示,在细胞质中形成Hsp70和Hsp90之间的异聚物,而在细胞核中没有形成。这表明这些热休克蛋白可以在细胞质中形成复合物,但在核易位后发生构象变化,使得热休克蛋白/热休克蛋白的结合位点不再被识别。这些数据表明,T47D细胞有多个p53前体分子,可能处于磷酸化的不同阶段,这些前体分子可能通过与热休克蛋白结合而与蛋白酶隔离。热休克蛋白也可以在细胞质中异复合体,也可能作为防止蛋白酶降解的保护,直到与p53结合。易位后,p53从Hsp蛋白中释放出来,与DNA结合,Hsp70和Hsp90不再能够形成核复合体,这可能导致Hsp不容易被蛋白水解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multiple p53 protein isoforms and formation of oligomeric complexes with heat shock proteins Hsp70 and Hsp90 in the human mammary tumor, T47D, cell line.

At least eleven isoforms of p53 protein were observed in a human mammary tumor cell line. T47D. Comparative 33P and 35S incorporation analysis showed an equal distribution of P53 isoforms within cytoplasmic and nuclear compartments, although phosphorylation was unequal among isoforms and the most basic p53 species was unphosphorylated. Using a combination of immunoprecipitation with monoclonal antibodies for p53 and heat shock proteins Hsp70 & Hsp90, and two-dimensional gel electrophoretic analysis, T47D p53 protein oligomers were observed with several species of Hsp70 and Hsp90. The p53/Hsp70/Hsp90 aggregate dissociates after nuclear translocation. Immunoprecipitation of Hsp70 and Hsp90 using monoclonal antibodies showed formation of a heteroligomer between Hsp70 and Hsp90 in cytoplasm but not nucleus. This suggests these Hsp proteins can form a complex in the cytoplasm but undergo a conformational change after nuclear translocation such that Hsp/Hsp binding sites are no longer recognized. These data indicate T47D cells have multiple p53 precursor molecules probably at different stages of phosphorylation, and which may be sequestered from proteases by binding to Hsp proteins. Hsp proteins also can heterocomplex in the cytoplasm, also possibly as protection against protease degradation until bound to p53. After translocation, p53 is freed from Hsp proteins for binding to DNA where Hsp70 and Hsp90 are no longer able to form a nuclear complex probably rendering Hsp's labile to proteolysis.

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