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有证据表明,一种p23半胱天冬酶切割形式的p27[KIP1]参与G1期生长停滞。

Evidence for a p23 caspase-cleaved form of p27[KIP1] involved in G1 growth arrest.

作者信息

Loubat A, Rochet N, Turchi L, Rezzonico R, Far D F, Auberger P, Rossi B, Ponzio G

机构信息

U364 INSERM Immunologie Cellulaire et Moléculaire, Faculté de Médecine, Nice, France.

出版信息

Oncogene. 1999 Jun 3;18(22):3324-33. doi: 10.1038/sj.onc.1202668.

Abstract

p27[KIP1] (p27) is a cyclin dependent kinase inhibitor, involved in the negative regulation of G1 progression in response to a number of anti-proliferative signals. In this study we show, in growing mouse hybridoma (7TD1) and human myeloma (U266) cell lines, that p27 is highly expressed but slightly upregulated when cells are arrested, regardless to the phases of the cell cycle. In contrast, the specific blockade of these cells in early G1 phase reveals the induction of a protein of 23 kDa (p23) specifically recognized by polyclonal anti-p27 antibodies raised against the NH2 terminal part of p27 but not by anti-p21[CIP1] antibodies. Experiments using caspase inhibitors strongly suggest that p23 results from the proteolysis of p27 by a 'caspase-3-like' protease. This cleavage leads to the cytosolic sequestration of p23 but does not alter its binding properties to CDK2 and CDK4 kinases. Indeed, p23 associated in vivo with high molecular weight complexes and coprecipitated with CDK2 and CDK4. We demonstrate by transfection experiments in SaOS-2 cells that p23 induces a G1 phase growth arrest by inhibition of cyclin/CDK2 activity. In summary we describe here a caspase-cleaved form of p27, induced in absence of detectable apoptosis and likely involved in cell cycle regulation.

摘要

p27[KIP1](p27)是一种细胞周期蛋白依赖性激酶抑制剂,参与响应多种抗增殖信号对G1期进程的负调控。在本研究中,我们发现在生长的小鼠杂交瘤(7TD1)和人骨髓瘤(U266)细胞系中,p27高度表达,但当细胞停滞时,无论处于细胞周期的哪个阶段,其表达仅略有上调。相比之下,将这些细胞特异性阻断在G1早期阶段发现,诱导产生了一种23 kDa的蛋白(p23),该蛋白能被针对p27 NH2末端部分产生的多克隆抗p27抗体特异性识别,但不能被抗p21[CIP1]抗体识别。使用半胱天冬酶抑制剂的实验强烈表明,p23是由一种“类半胱天冬酶-3”蛋白酶对p27进行蛋白水解产生的。这种切割导致p23在细胞质中隔离,但不改变其与CDK2和CDK4激酶的结合特性。实际上,p23在体内与高分子量复合物结合,并与CDK2和CDK4共沉淀。我们通过在SaOS-2细胞中的转染实验证明,p23通过抑制细胞周期蛋白/CDK2活性诱导G1期生长停滞。总之,我们在此描述了一种在无明显凋亡情况下诱导产生的p27半胱天冬酶切割形式,其可能参与细胞周期调控。

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