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与F-肌动蛋白独特的巯基相连的丹磺酰-L-半胱氨酸在偏振光下的纳秒脉冲荧光测定法;调节蛋白和肌球蛋白部分的影响。

Nanosecond pulse fluorometry in polarized light of dansyl-L-cysteine linked to a unique SH group of F-actin; the influence of regulatory proteins and myosin moiety.

作者信息

Wahl P, Mihashi K, Auchet J C

出版信息

FEBS Lett. 1975 Dec 1;60(1):164-7. doi: 10.1016/0014-5793(75)80443-1.

Abstract

The order of magnitude of the correlation time, which characterizes the dansyl cysteine residue linked to F-actin is ten times greater than the correlation time of the G-actin monomer [1]. Still it is much smaller than the correlation times of the F-actin polymer as a whole. The dansyl chromophore reveals that the C terminal end of the actin peptide chain, is mobile. As Ebashi and his co-workers have shown (13), Ca2+ triggers muscular contraction by acting on F-actin through the mediation of the regulatory proteins troponin and tropomyosin. By using spin label technique, Tonomura et al. [14] found that Ca2+ induces a conformational change on the troponin, tropomyosin actin complex. The quasi elastic scattering of laser light measurement of Fujime and Ishiwata [15] showed that troponin-tropomyosin F-actin has a rotational correlation time in the millisecond range which characterizes the flexibility of this complex; Ca2+ induces an increase of this flexibility. The present pulse fluorometry study shows an increase of mobility of the fluorescent probe induced by Ca2+. It seems difficult to correlate the results of the two kinds of measurements as long as we do not know the exact nature of the fluorescent kinetics unit.

摘要

表征与F-肌动蛋白相连的丹磺酰半胱氨酸残基的相关时间的数量级比G-肌动蛋白单体的相关时间大十倍[1]。不过,它仍比整个F-肌动蛋白聚合物的相关时间小得多。丹磺酰发色团表明肌动蛋白肽链的C末端是可移动的。正如江桥及其同事所表明的(13),Ca2+通过调节蛋白肌钙蛋白和原肌球蛋白的介导作用于F-肌动蛋白,从而触发肌肉收缩。通过使用自旋标记技术,户村等人[14]发现Ca2+会在肌钙蛋白、原肌球蛋白-肌动蛋白复合物上诱导构象变化。藤目和石渡进行的激光光准弹性散射测量[15]表明,肌钙蛋白-原肌球蛋白-F-肌动蛋白具有毫秒级范围内表征该复合物柔韧性的旋转相关时间;Ca2+会使这种柔韧性增加。目前的脉冲荧光测定研究表明,Ca2+会诱导荧光探针的迁移率增加。只要我们不知道荧光动力学单元的确切性质,似乎就难以将这两种测量结果联系起来。

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