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驱动蛋白多肽与微管刺激的Mg-ATP酶活性的共纯化及酶学性质的动力学分析。

Copurification of kinesin polypeptides with microtubule-stimulated Mg-ATPase activity and kinetic analysis of enzymatic properties.

作者信息

Wagner M C, Pfister K K, Bloom G S, Brady S T

机构信息

Department of Cell Biology and Anatomy, University of Texas Southwestern Medical Center, Dallas 75235.

出版信息

Cell Motil Cytoskeleton. 1989;12(4):195-215. doi: 10.1002/cm.970120403.

Abstract

Determination of kinetic properties for kinesin adenosine triphosphatase (ATPase), a proposed motor for transport of membranous organelles, requires adequate amounts of kinesin with a consistent level of enzymatic activity. A purification procedure is detailed that produces approximately 2 mg of kinesin at up to 96% purity from 800 g of bovine brain. This protocol consists of a microtubule affinity step using 5'-adenylylimidodiphosphate (AMP-PNP); followed by gel filtration, ion exchange, and hydroxylapatite chromatography; and then sucrose density gradient centrifugation. The microtubule-activated ATPase activity of kinesin coeluted with kinesin polypeptides throughout the purification. Highly purified kinesin had a Vmax of 0.31 mumol/min/mg in the presence of microtubules, with a Km for ATP of 0.20 mM. The kinetic constants obtained in these studies compare favorably with physiological levels of ATP and microtubules. Variations in buffer conditions for the assay were found to affect ATPase activity significantly. A study of the ability of kinesin to utilize a variety of cation-ATP complexes indicated that kinesin is a microtubule-stimulated Mg-ATPase, but kinesin is able to hydrolyze Ca-ATP, Mn-ATP, and Co-ATP as well as Mg-ATP in the presence of microtubules. In the absence of microtubules, Ca-ATP appears to be the best substrate. Studies with several inhibitors of ATPases determined that vanadate inhibited kinesin ATPase at the lowest concentrations of inhibitor, but significant inhibition of the ATPase also occurred with submillimolar concentrations of AMP-PNP. Other inhibitors of kinesin include N-ethylmaleimide, adenosine diphosphate (ADP), pyrophosphate, and tripolyphosphate. Further characterization of the kinetic properties of the kinesin ATPase is important for understanding the molecular mechanisms for transport of membranous organelles along microtubules.

摘要

驱动蛋白三磷酸腺苷酶(ATP酶)被认为是一种负责膜性细胞器运输的分子马达,对其动力学特性的测定需要足够量且酶活性水平一致的驱动蛋白。本文详细介绍了一种纯化方法,该方法可从800克牛脑中产生约2毫克纯度高达96%的驱动蛋白。此方案包括一个使用5'-腺苷酰亚胺二磷酸(AMP-PNP)的微管亲和步骤;随后进行凝胶过滤、离子交换和羟基磷灰石色谱;然后进行蔗糖密度梯度离心。在整个纯化过程中,驱动蛋白的微管激活ATP酶活性与驱动蛋白多肽共洗脱。高度纯化的驱动蛋白在微管存在下的Vmax为0.31 μmol/分钟/毫克,ATP的Km为0.20 mM。这些研究中获得的动力学常数与ATP和微管的生理水平相比具有优势。发现测定缓冲条件的变化会显著影响ATP酶活性。一项关于驱动蛋白利用多种阳离子-ATP复合物能力的研究表明,驱动蛋白是一种微管刺激的Mg-ATP酶,但在微管存在下,驱动蛋白也能够水解Ca-ATP、Mn-ATP和Co-ATP以及Mg-ATP。在没有微管的情况下,Ca-ATP似乎是最佳底物。对几种ATP酶抑制剂的研究确定,钒酸盐在最低抑制剂浓度下抑制驱动蛋白ATP酶,但亚毫摩尔浓度的AMP-PNP也会对ATP酶产生显著抑制。驱动蛋白的其他抑制剂包括N-乙基马来酰亚胺、二磷酸腺苷(ADP)、焦磷酸和三聚磷酸。进一步表征驱动蛋白ATP酶的动力学特性对于理解膜性细胞器沿微管运输的分子机制很重要。

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