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在存在二磷酸腺苷(ADP)和三磷酸腺苷(ATP)的情况下,莫那可林与驱动蛋白样蛋白5(Eg5)变构相互作用的差异:傅里叶变换红外光谱(FT-IR)差异研究

Disparity in allosteric interactions of monastrol with Eg5 in the presence of ADP and ATP: a difference FT-IR investigation.

作者信息

Wojcik Edward J, Dalrymple Nadine A, Alford Shannon R, Walker Richard A, Kim Sunyoung

机构信息

Department of Biology, Virginia Polytechnic Institute and State University, Blacksburg, Virginia 24061, USA.

出版信息

Biochemistry. 2004 Aug 10;43(31):9939-49. doi: 10.1021/bi048982y.

Abstract

Eg5 is a kinesin-like motor protein required for mitotic progression in higher eukaryotes. It is thought to cross-link antiparallel microtubules, and provides a force required for the formation of a bipolar spindle. Monastrol causes the catastrophic collapse of the mitotic spindle through the allosteric inhibition of Eg5. Utilizing a truncated Eg5 protein, we employ difference infrared spectroscopy to probe structural changes that occur in the motor protein with monastrol in the presence of either ADP or ATP. Difference FT-IR spectra of Eg5-monastrol-nucleotide complexes demonstrate that there are triggered conformational changes corresponding to an interconversion of secondary structural elements in the motor upon interaction with nucleotides. Notably, conformational changes elicited in the presence of ADP are different from those in the presence of ATP. In Eg5-monastrol complexes, exchange of ADP is associated with a decrease in random structure and an increase in alpha-helical content. In contrast, formation of the Eg5-monastrol-ATP complex is associated with a decrease in alpha-helical content and a concomitant increase in beta-sheet content. One or more carboxylic acid residues in Eg5 undergo unique changes when ATP, but not ADP, interacts with the motor domain in the presence of monastrol. This first direct dissection of inhibitor-protein interactions, using these methods, demonstrates a clear disparity in the structural consequences of monastrol in the presence of ADP versus ATP.

摘要

Eg5是一种类似驱动蛋白的马达蛋白,是高等真核生物有丝分裂进程所必需的。它被认为能交联反向平行的微管,并为双极纺锤体的形成提供所需的力。Monastrol通过对Eg5的变构抑制导致有丝分裂纺锤体灾难性崩溃。利用截短的Eg5蛋白,我们采用差示红外光谱法来探测在存在ADP或ATP的情况下,马达蛋白与Monastrol相互作用时发生的结构变化。Eg5-Monastrol-核苷酸复合物的差示傅里叶变换红外光谱表明,与核苷酸相互作用时,马达蛋白中对应于二级结构元件相互转换的构象变化被触发。值得注意的是,在ADP存在下引发的构象变化与在ATP存在下的不同。在Eg5-Monastrol复合物中,ADP的交换与无规结构的减少和α-螺旋含量的增加相关。相反,Eg5-Monastrol-ATP复合物的形成与α-螺旋含量的减少以及β-折叠含量的相应增加相关。当ATP而非ADP在Monastrol存在下与马达结构域相互作用时,Eg5中的一个或多个羧酸残基会发生独特变化。使用这些方法对抑制剂-蛋白质相互作用进行的首次直接剖析表明,在ADP与ATP存在下,Monastrol的结构后果存在明显差异。

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