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连接足部蛋白的构象变化参与肌浆网Ca2+释放的调节。聚赖氨酸诱导的Ca2+释放研究。

A conformational change in the junctional foot protein is involved in the regulation of Ca2+ release from sarcoplasmic reticulum. Studies on polylysine-induced Ca2+ release.

作者信息

el-Hayek R, Yano M, Ikemoto N

机构信息

Boston Biomedical Research Institute, Massachusetts 02114, USA.

出版信息

J Biol Chem. 1995 Jun 30;270(26):15634-8. doi: 10.1074/jbc.270.26.15634.

Abstract

We investigated both conformational changes in the junctional foot protein (JFP) and Ca2+ release from sarcoplasmic reticulum (SR) in parallel after stimulation of triadic vesicles by the JFP-specific ligand, polylysine. To monitor protein conformational change, the JFP was labeled in a site-directed fashion with the fluorescent conformational probe methylcoumarin acetate (MCA) (Kang, J. J., Tarcsafalvi, A., Carlos, A. D., Fujimoto, E., Shahrokh, Z., Thevenin, B. J.-M., Shohet, S. B., and Ikemoto, N. (1992) Biochemistry 31, 3288-3293). The induction of SR Ca2+ release by polylysine produced a rapid increase in the fluorescence intensity of the JFP-bound MCA. The polylysine concentration dependence of the fluorescence change was essentially the same as that of Ca2+ release, suggesting that the two events are tightly coupled. However, the rate constant of MCA fluorescence change was much larger than that of Ca2+ release; i.e. the conformational change preceded Ca2+ release. Prevention of protein conformational change by lysine (0.2 M) inhibited Ca2+ release from SR. Inhibition of Ca2+ release by Mg2+ (5 mM), however, had little effect on the conformational change. These results suggest that binding of polylysine to the JFP produces conformational changes in the protein, which in turn activates the Ca2+ channel, leading to Ca2+ release from the SR.

摘要

我们在用连接足部蛋白(JFP)特异性配体聚赖氨酸刺激三联小泡后,同时研究了JFP的构象变化和肌浆网(SR)中Ca2+的释放情况。为监测蛋白质的构象变化,用荧光构象探针乙酸甲基香豆素(MCA)以定点方式标记JFP(Kang, J. J., Tarcsafalvi, A., Carlos, A. D., Fujimoto, E., Shahrokh, Z., Thevenin, B. J.-M., Shohet, S. B., and Ikemoto, N. (1992) Biochemistry 31, 3288 - 3293)。聚赖氨酸诱导SR Ca2+释放导致与JFP结合的MCA荧光强度迅速增加。荧光变化的聚赖氨酸浓度依赖性与Ca2+释放的浓度依赖性基本相同,表明这两个事件紧密耦合。然而,MCA荧光变化的速率常数远大于Ca2+释放的速率常数;即构象变化先于Ca2+释放。用赖氨酸(0.2 M)阻止蛋白质构象变化可抑制SR释放Ca2+。然而,Mg2+(5 mM)抑制Ca2+释放对构象变化影响很小。这些结果表明,聚赖氨酸与JFP结合会使蛋白质产生构象变化,进而激活Ca2+通道,导致SR释放Ca2+。

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