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RIα通过将RFC40转运到细胞核中来影响癌细胞的细胞增殖。

RIalpha influences cellular proliferation in cancer cells by transporting RFC40 into the nucleus.

作者信息

Gupte Rakhee S, Pozarowski Piotr, Grabarek Jerzy, Traganos Frank, Darzynkiewicz Zbigniew, Lee Marietta Y W T

机构信息

Department of Biochemistry & Molecular Biology, New York Medical College, Valhalla, New York 10595, USA.

出版信息

Cancer Biol Ther. 2005 Apr;4(4):429-37. doi: 10.4161/cbt.4.4.1621. Epub 2005 Apr 21.

Abstract

The regulatory subunit (RIalpha) of cAMP-dependent Protein Kinase A (PKA) is overexpressed in a variety of tumors and carcinomas such as renal cell carcinomas, pituitary tumors of the rat, malignant osteoblasts, colon carcinomas, serous ovarian tumors and primary human breast carcinomas. However, the direct relation between overexpression of RIalpha and malignancy is still unclear. We have recently identified a novel interaction between RIalpha and RFC40, the second subunit of Replication Factor C (RFC), and have demonstrated that this interaction may be associated with cell survival. Coincidentally, RFC40 is overexpressed in gestational trophoblastic diseases such as choriocarcinomas. This study was undertaken to investigate a possible functional role for both these proteins together, in DNA replication and cellular proliferation. In the course of this study, a nonconventional nuclear localization signal was identified for RIalpha. Nuclear transport of RFC40 was found to be dependent on RIalpha, and this transport appeared to be a crucial step for cell cycle progression from G1 to S phase. Impairment in the nuclear transport of RFC40 by RIalpha arrested cells in G1 phase. These findings provide evidence for a previously unknown mechanism for the nuclear transport of RFC40 and also for a novel mechanism for cellular proliferation.

摘要

环磷酸腺苷(cAMP)依赖性蛋白激酶A(PKA)的调节亚基(RIα)在多种肿瘤和癌中过度表达,如肾细胞癌、大鼠垂体瘤、恶性成骨细胞、结肠癌、浆液性卵巢肿瘤和原发性人类乳腺癌。然而,RIα过度表达与恶性肿瘤之间的直接关系仍不清楚。我们最近发现了RIα与复制因子C(RFC)的第二个亚基RFC40之间的一种新型相互作用,并证明这种相互作用可能与细胞存活有关。巧合的是,RFC40在妊娠滋养细胞疾病如绒毛膜癌中过度表达。本研究旨在探讨这两种蛋白在DNA复制和细胞增殖中可能共同发挥的功能作用。在这项研究过程中,为RIα鉴定出一种非传统的核定位信号。发现RFC40的核转运依赖于RIα,并且这种转运似乎是细胞周期从G1期进展到S期的关键步骤。RIα对RFC40核转运的损害使细胞停滞在G1期。这些发现为RFC40核转运的一种先前未知机制以及细胞增殖的一种新机制提供了证据。

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