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热休克蛋白90(Hsp90)抑制对调节成肌细胞分化所需信号转导途径的蛋白激酶的不同作用。

Differential effects of Hsp90 inhibition on protein kinases regulating signal transduction pathways required for myoblast differentiation.

作者信息

Yun Bo-Geon, Matts Robert L

机构信息

Department of Biochemistry and Molecular Biology, 246 NRC, Oklahoma State University, Stillwater, OK 74078-3035, USA.

出版信息

Exp Cell Res. 2005 Jul 1;307(1):212-23. doi: 10.1016/j.yexcr.2005.03.003. Epub 2005 Apr 1.

Abstract

As derivatives of the Hsp90-inhibitor and tumoricidal agent geldanamycin move into phase II clinical trials, its potential for triggering adverse effects in non-tumor cell populations requires closer examination. In this report, the effect of geldanamycin on the differentiation and survival of C2C12 myoblasts was investigated. Treatment of differentiating C2C12 myoblasts with geldanamycin blocked myogenin expression, inhibited myotubule formation, and led to the depletion of three Hsp90-dependent protein kinases, ErbB2, Fyn, and Akt, and induction of apoptosis. ErbB2 levels declined rapidly, while Fyn and Akt levels decreased at a slower rate. Geldanamycin blocked the interaction of Hsp90 and its "kinase-specific" co-chaperone Cdc37 with Fyn, indicating that Fyn is an Hsp90-dependent kinase. Pulse-chase experiments indicated that geldanamycin caused newly synthesized Akt and Fyn to be degraded rapidly, but geldanamycin had little effect on the turnover rate of mature Fyn and Akt. Curiously, total cellular Src (c-Src) protein levels and the turnover rate of newly synthesized c-Src were unaffected by geldanamycin. While, geldanamycin had no effect on the levels of the putative Hsp90 client protein MyoD expressed in C2C12 cells, geldanamycin disrupted the interaction of Cdc37 with MyoD. Thus, inhibition of Hsp90 caused C2C12 cells to become depleted of multiple signal transduction proteins whose functions are essential for myoblast differentiation, and muscle cell survival, suggesting that geldanamycin derivatives may have the prospective of adversely affecting the physiology of certain sensitive muscle cell populations in vivo.

摘要

随着Hsp90抑制剂和肿瘤杀伤剂格尔德霉素的衍生物进入II期临床试验,其在非肿瘤细胞群体中引发不良反应的可能性需要更深入的研究。在本报告中,研究了格尔德霉素对C2C12成肌细胞分化和存活的影响。用格尔德霉素处理正在分化的C2C12成肌细胞会阻断肌细胞生成素的表达,抑制肌管形成,并导致三种Hsp90依赖性蛋白激酶ErbB2、Fyn和Akt的耗竭,并诱导细胞凋亡。ErbB2水平迅速下降,而Fyn和Akt水平下降速度较慢。格尔德霉素阻断了Hsp90及其“激酶特异性”共伴侣Cdc37与Fyn的相互作用,表明Fyn是一种Hsp90依赖性激酶。脉冲追踪实验表明格尔德霉素导致新合成的Akt和Fyn迅速降解,但格尔德霉素对成熟Fyn和Akt的周转率影响很小。奇怪的是,总细胞Src(c-Src)蛋白水平和新合成c-Src的周转率不受格尔德霉素影响。虽然格尔德霉素对C2C12细胞中假定的Hsp90客户蛋白MyoD水平没有影响,但格尔德霉素破坏了Cdc37与MyoD的相互作用。因此,抑制Hsp90导致C2C12细胞中多种信号转导蛋白耗竭,这些蛋白的功能对成肌细胞分化和肌肉细胞存活至关重要,这表明格尔德霉素衍生物可能会对体内某些敏感肌肉细胞群体的生理功能产生不利影响。

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