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非肌肉肌球蛋白II与轴浆细胞器的关联。

Association of a nonmuscle myosin II with axoplasmic organelles.

作者信息

DeGiorgis Joseph A, Reese Thomas S, Bearer Elaine L

机构信息

Molecular & Cell Biology and Biochemistry Program, Brown University, Providence, RI 02912, USA.

出版信息

Mol Biol Cell. 2002 Mar;13(3):1046-57. doi: 10.1091/mbc.01-06-0315.

Abstract

Association of motor proteins with organelles is required for the motors to mediate transport. Because axoplasmic organelles move on actin filaments, they must have associated actin-based motors, most likely members of the myosin superfamily. To gain a better understanding of the roles of myosins in the axon we used the giant axon of the squid, a powerful model for studies of axonal physiology. First, a approximately 220 kDa protein was purified from squid optic lobe, using a biochemical protocol designed to isolate myosins. Peptide sequence analysis, followed by cloning and sequencing of the full-length cDNA, identified this approximately 220 kDa protein as a nonmuscle myosin II. This myosin is also present in axoplasm, as determined by two independent criteria. First, RT-PCR using sequence-specific primers detected the transcript in the stellate ganglion, which contains the cell bodies that give rise to the giant axon. Second, Western blot analysis using nonmuscle myosin II isotype-specific antibodies detected a single approximately 220 kDa band in axoplasm. Axoplasm was fractionated through a four-step sucrose gradient after 0.6 M KI treatment, which separates organelles from cytoskeletal components. Of the total nonmuscle myosin II in axoplasm, 43.2% copurified with organelles in the 15% sucrose fraction, while the remainder (56.8%) was soluble and found in the supernatant. This myosin decorates the cytoplasmic surface of 21% of the axoplasmic organelles, as demonstrated by immunogold electron-microscopy. Thus, nonmuscle myosin II is synthesized in the cell bodies of the giant axon, is present in the axon, and is associated with isolated axoplasmic organelles. Therefore, in addition to myosin V, this myosin is likely to be an axoplasmic organelle motor.

摘要

运动蛋白与细胞器的结合是这些运动蛋白介导运输所必需的。由于轴浆细胞器在肌动蛋白丝上移动,它们必定具有与之相关的基于肌动蛋白的运动蛋白,很可能是肌球蛋白超家族的成员。为了更好地理解肌球蛋白在轴突中的作用,我们使用了鱿鱼的巨大轴突,这是研究轴突生理学的一个强大模型。首先,利用旨在分离肌球蛋白的生化方法从鱿鱼视叶中纯化出一种约220 kDa的蛋白质。通过肽序列分析,随后进行全长cDNA的克隆和测序,确定这种约220 kDa的蛋白质为非肌肉肌球蛋白II。通过两个独立的标准确定,这种肌球蛋白也存在于轴浆中。首先,使用序列特异性引物进行的逆转录聚合酶链反应(RT-PCR)在星状神经节中检测到了该转录本,星状神经节包含产生巨大轴突的细胞体。其次,使用非肌肉肌球蛋白II同种型特异性抗体进行的蛋白质印迹分析在轴浆中检测到一条单一的约220 kDa条带。在0.6 M碘化钾处理后,轴浆通过四步蔗糖梯度进行分级分离,这将细胞器与细胞骨架成分分开。在轴浆中的总非肌肉肌球蛋白II中,43.2%与15%蔗糖级分中的细胞器共纯化,而其余部分(56.8%)是可溶的,存在于上清液中。如免疫金电子显微镜所示,这种肌球蛋白修饰了21%的轴浆细胞器的细胞质表面。因此,非肌肉肌球蛋白II在巨大轴突的细胞体中合成,存在于轴突中,并与分离的轴浆细胞器有关。所以,除了肌球蛋白V之外,这种肌球蛋白很可能是一种轴浆细胞器运动蛋白。

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