Knockdown of human deubiquitinase PSMD14 induces cell cycle arrest and senescence

衰老 基因敲除 自噬 细胞周期检查点 泛素 脱氮酶 RNA干扰 基因沉默 细胞生长 DNA损伤
作者
Ann Byrne,Rajashree McLaren,Paul T. Mason,Lilly Chai,Michael R. Dufault,Yinyin Huang,Beirong Liang,Joseph Gans,Mindy Zhang,Kara Carter,Tatiana Gladysheva,Beverly A. Teicher,Hans-Peter Biemann,Michael Booker,Mark A. Goldberg,Katherine W. Klinger,James Lillie,Stephen L. Madden,Yide Jiang
出处
期刊:Experimental Cell Research [Elsevier]
卷期号:316 (2): 258-271 被引量:45
标识
DOI:10.1016/j.yexcr.2009.08.018
摘要

The PSMD14 (POH1, also known as Rpn11/MPR1/S13/CepP1) protein within the 19S complex (19S cap; PA700) is responsible for substrate deubiquitination during proteasomal degradation. The role of PSMD14 in cell proliferation and senescence was explored using siRNA knockdown in carcinoma cell lines. Our results reveal that down-regulation of PSMD14 by siRNA transfection had a considerable impact on cell viability causing cell arrest in the G0-G1 phase, ultimately leading to senescence. The molecular events associated with decreased cell proliferation, cell cycle arrest and senescence include down-regulation of cyclin B1-CDK1-CDC25C, down-regulation of cyclin D1 and up-regulation of p21(/Cip) and p27(/Kip1). Most notably, phosphorylation of the retinoblastoma protein was markedly reduced in PSMD14 knockdown cells. A comparative study with PSMB5, a subunit of the 20S proteasome, revealed that PSMB5 and PSMD14 have different effects on cell cycle, senescence and associated molecular events. These data support the view that the 19S and 20S subunits of the proteasome have distinct biological functions and imply that targeting 19S and 20S would have distinct molecular consequences on tumor cells.

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