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YWK-II蛋白作为苗勒氏管抑制物质在细胞存活中的一种新型G(o)偶联受体。

YWK-II protein as a novel G(o)-coupled receptor for Müllerian inhibiting substance in cell survival.

作者信息

Yin Xueqian, Ouyang Songying, Xu Wenming, Zhang Xiaopeng, Fok Kin Lam, Wong Hau Yan, Zhang Jiaping, Qiu Xiaobo, Miao Shiying, Chan Hsiao Chang, Wang Linfang

机构信息

National Laboratory of Medical Molecular Biology, Institute of Basic Medical Sciences, Chinese Academy of Medical Sciences, Peking Union Medical College, 5 Dong Dan San Tiao, Beijing 100005, China.

出版信息

J Cell Sci. 2007 May 1;120(Pt 9):1521-8. doi: 10.1242/jcs.001230.

Abstract

Müllerian inhibiting substance (MIS) has recently been implicated in multiple cellular functions including promotion of cell survival, but the receptor(s) and signaling pathways involved remain elusive. We have investigated the possibility of YWK-II protein, previously shown to interact physically with MIS and G(o) protein, being a receptor mediating the cell survival effect of MIS. In YWK-II-overexpressing CHO cells, MIS activates the G(o)-coupled ERK1/2 signaling pathway and promotes cell survival with altered levels of p53 and caspase-3. YWK-II antibody is found to interfere with the ability of MIS to promote viability of mouse sperm and affect MIS-activated ERK1/2 phosphorylation. In vivo studies involving injection of YWK-II antibody into the seminiferous tubule of the mouse testis, where MIS is known to be produced, show significant reduction in the sperm count with accumulation of p53 and cleaved caspase-3 in testicular nuclei. Taken together, the present study has demonstrated a new G(o)-coupled receptor for MIS in mediating ERK1/2 activation leading to anti-apoptotic activity or cell survival.

摘要

苗勒管抑制物质(MIS)最近被认为参与多种细胞功能,包括促进细胞存活,但相关的受体和信号通路仍不清楚。我们研究了YWK-II蛋白作为介导MIS细胞存活效应的受体的可能性,此前已证明YWK-II蛋白与MIS和G(o)蛋白存在物理相互作用。在过表达YWK-II的CHO细胞中,MIS激活G(o)偶联的ERK1/2信号通路,并通过改变p53和caspase-3水平促进细胞存活。发现YWK-II抗体可干扰MIS促进小鼠精子活力的能力,并影响MIS激活的ERK1/2磷酸化。在体内研究中,将YWK-II抗体注射到已知产生MIS的小鼠睾丸曲细精管中,结果显示精子数量显著减少,睾丸细胞核中p53和裂解的caspase-3积累。综上所述,本研究证明了一种新的MIS的G(o)偶联受体,其介导ERK1/2激活,导致抗凋亡活性或细胞存活。

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