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驱动蛋白家族成员BimC在其马达结构域的N端连接有第二个微管结合区域。

The kinesin family member BimC contains a second microtubule binding region attached to the N terminus of the motor domain.

作者信息

Stock Maryanne F, Chu Jessica, Hackney David D

机构信息

Department of Biological Sciences, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213, USA.

出版信息

J Biol Chem. 2003 Dec 26;278(52):52315-22. doi: 10.1074/jbc.M309419200. Epub 2003 Oct 6.

DOI:10.1074/jbc.M309419200
PMID:14530265
Abstract

The kinesin family member BimC has a highly positively charged domain of approximately 70 amino acids at the N terminus of the motor domain. Motor domain constructs of BimC were prepared with and without this extra domain to determine its influence. The level of microtubules needed for half saturation of the ATPase of BimC motor domain constructs is reduced by approximately 7000-fold at low ionic strength upon addition of this extra N-terminal extension. Although the change in microtubule affinity is less at higher salt, addition of the N-terminal domain still produces a 20-fold increase in affinity for microtubules in 200 mm potassium acetate. A fusion protein of the N-terminal domain and thioredoxin binds tightly to MTs at low salt, consistent with the increased affinity of motor domain constructs (which contain the N-terminal domain) being due to the additional binding of the N-terminal domain to the microtubule. Hydrodynamic analysis indicates that the N-terminal extension is in a highly extended conformation, suggesting that it may be intrinsically disordered. Fusion of the N-terminal extension of BimC onto the motor domain of conventional kinesin produces a similar large increase in microtubule affinity without significant reduction in kcat or velocity in an in vitro motility assay, suggesting that the N-terminal extension can act in a modular manner to increase the microtubule affinity of kinesin motor domains without a decrease in velocity.

摘要

驱动蛋白家族成员BimC在驱动域的N端有一个约70个氨基酸的高度带正电荷的结构域。制备了带有和不带有这个额外结构域的BimC驱动域构建体,以确定其影响。在低离子强度下,添加这个额外的N端延伸后,BimC驱动域构建体ATP酶半饱和所需的微管水平降低了约7000倍。尽管在较高盐浓度下微管亲和力的变化较小,但在200 mM醋酸钾中添加N端结构域仍会使微管亲和力增加20倍。N端结构域与硫氧还蛋白的融合蛋白在低盐下与微管紧密结合,这与驱动域构建体(包含N端结构域)亲和力增加是由于N端结构域与微管的额外结合一致。流体动力学分析表明,N端延伸处于高度伸展的构象,表明它可能是内在无序的。将BimC的N端延伸融合到传统驱动蛋白的驱动域上,在体外运动测定中,微管亲和力也有类似的大幅增加,且催化常数或速度没有显著降低,这表明N端延伸可以以模块化方式增加驱动蛋白驱动域的微管亲和力而不降低速度。

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