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重组动力蛋白重链的体外运动性

In vitro motility from recombinant dynein heavy chain.

作者信息

Mazumdar M, Mikami A, Gee M A, Vallee R B

机构信息

Worcester Foundation for Biomedical Research, Shrewsbury, MA 01545, USA.

出版信息

Proc Natl Acad Sci U S A. 1996 Jun 25;93(13):6552-6. doi: 10.1073/pnas.93.13.6552.

Abstract

The dyneins are a class of motor protein involved in ciliary and flagellar motility, organelle transport, and chromosome segregation. Because of their large size and subunit complexity, relatively little is known about their mechanisms of force production and regulation. We report here on the expression and analysis of the entire rat cytoplasmic dynein heavy chain (Mr 532,000). Full-length cDNAs were constructed from a series of partial clones and tagged at the C terminus with either a FLAG-epitope tag or a His6-tag. The recombinant polypeptides were expressed either in insect cells by baculovirus infection or in COS-7 cells by transient transfection. The recombinant protein was mostly soluble and showed good microtubule binding. It exhibited a broad sedimentation profile, indicative of the formation of dimers as well as higher order multimers. Good microtubule gliding motility activity was observed in assays of heavy chain expressed in either insect or COS-7 cells. Average microtubule gliding velocities of 1.2-1.8 microm/sec were observed, comparable with the rates determined for calf brain cytoplasmic dynein. These results represent the first indication that recombinant heavy chain alone is capable of force production, and should lead to rapid progress in defining the dynein motor domain.

摘要

动力蛋白是一类参与纤毛和鞭毛运动、细胞器运输及染色体分离的驱动蛋白。由于其体积庞大且亚基复杂,人们对其产生力及调节的机制了解相对较少。我们在此报告大鼠胞质动力蛋白重链(532,000道尔顿)的表达及分析情况。全长cDNA由一系列部分克隆构建而成,并在C末端用FLAG表位标签或His6标签进行标记。重组多肽通过杆状病毒感染在昆虫细胞中表达,或通过瞬时转染在COS - 7细胞中表达。重组蛋白大多可溶,且显示出良好的微管结合能力。它呈现出较宽的沉降分布,表明形成了二聚体以及更高阶的多聚体。在昆虫细胞或COS - 7细胞中表达的重链检测中观察到了良好的微管滑动运动活性。观察到平均微管滑动速度为1.2 - 1.8微米/秒,与小牛脑胞质动力蛋白测定的速率相当。这些结果首次表明单独的重组重链能够产生力,并且应会在确定动力蛋白运动结构域方面取得快速进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36c3/39062/3bcce6bd7d2f/pnas01517-0349-a.jpg

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