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使用鲎顶体过程和基于光镊的检测方法对免疫吸附的脑肌球蛋白-V进行体外运动分析。

In vitro motility of immunoadsorbed brain myosin-V using a Limulus acrosomal process and optical tweezer-based assay.

作者信息

Wolenski J S, Cheney R E, Mooseker M S, Forscher P

机构信息

Yale University, Department of Biology, New Haven, CT 06520-8103, USA.

出版信息

J Cell Sci. 1995 Apr;108 ( Pt 4):1489-96. doi: 10.1242/jcs.108.4.1489.

Abstract

To facilitate functional studies of novel myosins, we have developed a strategy for characterizing the mechanochemical properties of motors isolated by immunoadsorption directly from small amounts of crude tissue extracts. In this initial study, silica beads coated with an antibody that specifically recognizes the tail of myosin-V were used to immunoadsorb this motor protein from brain extracts. The myosin-containing beads were then positioned with optical tweezers onto actin filaments nucleated from Limulus sperm acrosomal processes and observed for motility using high resolution video DIC microscopy. The addition of brush border spectrin to the motility chamber enabled the growth of stable actin filament tracks that were approximately 4-fold longer than filaments grown in the absence of this actin crosslinking protein. The velocity of myosin-V immunoadsorbed from brain extracts was similar to that observed for purified myosin-V that was antibody-linked to beads or assessed using the sliding actin filament assay. Motile beads containing myosin-V immunoadsorbed from brain extracts bound poorly to nucleated actin filaments and were incapable of linear migrations following the addition of a different antibody that specifically recognizes the motor-containing head domain of myosin-V. Myosin-V motility was most robust in the absence of Ca2+. Interestingly, skeletal muscle tropomyosin and brush border spectrin had no detectable effect on myosin-V mechanochemistry. Myosin-V containing beads were also occasionally observed migrating directly on acrosomal processes in the absence of exogenously added actin.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

为促进对新型肌球蛋白的功能研究,我们开发了一种策略,用于表征直接从少量粗制组织提取物中通过免疫吸附分离得到的马达蛋白的机械化学特性。在这项初步研究中,用特异性识别肌球蛋白-V尾部的抗体包被的硅胶珠从脑提取物中免疫吸附这种马达蛋白。然后用光学镊子将含肌球蛋白的珠子放置在由鲎精子顶体突起形成的肌动蛋白丝上,并用高分辨率视频微分干涉对比显微镜观察其运动情况。向运动腔中添加刷状缘血影蛋白能使稳定的肌动蛋白丝轨道生长,其长度比在没有这种肌动蛋白交联蛋白的情况下生长的丝长约4倍。从脑提取物中免疫吸附的肌球蛋白-V的速度与用抗体连接到珠子上的纯化肌球蛋白-V或使用肌动蛋白丝滑动试验评估的速度相似。从脑提取物中免疫吸附的含肌球蛋白-V的运动珠子与有核肌动蛋白丝的结合较差,在添加特异性识别肌球蛋白-V含马达头部结构域的另一种抗体后无法进行线性迁移。在没有Ca2+的情况下,肌球蛋白-V的运动最为活跃。有趣的是,骨骼肌原肌球蛋白和刷状缘血影蛋白对肌球蛋白-V的机械化学没有可检测到的影响。在没有外源添加肌动蛋白的情况下,偶尔也会观察到含肌球蛋白-V的珠子直接在顶体突起上迁移。(摘要截短于250字)

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