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诺考达唑对小牛脑微管蛋白结构的影响。

Effects of nocodazole on structures of calf brain tubulin.

作者信息

Lee J C, Field D J, Lee L L

出版信息

Biochemistry. 1980 Dec 23;19(26):6209-15. doi: 10.1021/bi00567a041.

Abstract

The interaction of nocodazole with calf brain tubulin was studied to determine the effect of such interaction on the structure of tubulin. The effect of nocodazole on the self-association of tubulin was monitored by turbidity measurements and velocity sedimentation. Sedimentation patterns indicate that nocodazole neither induces tubulin to undergo self-association to form higher orders of aggregate nor does it perturb the equilibrium of the reaction leading to the formation of 42S double-ring structures although nocodazole binds to both the tubulin dimers and the polymeric form. Nocodazole does, however, inhibit the in vitro reconstitution of microtubules, and the presence of microtubule-associated proteins does not amplify the inhibitory effect of the drug. The conformational changes in tubulin upon binding of nocodazole were monitored by differential spectroscopy, circular dichroism, fluorescence, and chemical modification of sulfhydryl residues. Results from these studies show that the sulfhydryl residues become more accessible to chemical modification. In contrast, the binding of nocodazole does not significantly alter the net environment of tryptophan chromophores. These residues are apparently not all located on the surface of the tubulin molecule and at least some are partially buried.

摘要

研究了诺考达唑与小牛脑微管蛋白的相互作用,以确定这种相互作用对微管蛋白结构的影响。通过浊度测量和速度沉降监测诺考达唑对微管蛋白自缔合的影响。沉降模式表明,诺考达唑既不诱导微管蛋白进行自缔合形成更高阶的聚集体,也不扰乱导致形成42S双环结构的反应平衡,尽管诺考达唑与微管蛋白二聚体和聚合形式都结合。然而,诺考达唑确实抑制微管的体外重组,并且微管相关蛋白的存在不会放大该药物的抑制作用。通过差示光谱、圆二色性、荧光以及巯基残基的化学修饰来监测诺考达唑结合后微管蛋白的构象变化。这些研究结果表明,巯基残基在化学修饰时变得更容易接近。相比之下,诺考达唑的结合并没有显著改变色氨酸发色团的净环境。这些残基显然并非都位于微管蛋白分子表面,至少有一些是部分埋藏的。

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