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Dissection of the Ascaris Sperm Motility Machinery Identifies Key Proteins Involved in Major Sperm Protein-based Amoeboid Locomotion

机译:scar虫精子动力机制的解剖确定主要精子蛋白质为基础的变形虫运动涉及的关键蛋白质。

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摘要

Although Ascaris sperm motility closely resembles that seen in many other types of crawling cells, the lamellipodial dynamics that drive movement result from modulation of a cytoskeleton based on the major sperm protein (MSP) rather than actin. The dynamics of the Ascaris sperm cytoskeleton can be studied in a cell-free in vitro system based on the movement of plasma membrane vesicles by fibers constructed from bundles of MSP filaments. In addition to ATP, MSP, and a plasma membrane protein, reconstitution of MSP motility in this cell-free extract requires cytosolic proteins that orchestrate the site-specific assembly and bundling of MSP filaments that generates locomotion. Here, we identify a fraction of cytosol that is comprised of a small number of proteins but contains all of the soluble components required to assemble fibers. We have purified two of these proteins, designated MSP fiber proteins (MFPs) 1 and 2 and demonstrated by immunolabeling that both are located in the MSP cytoskeleton in cells and in fibers. These proteins had reciprocal effects on fiber assembly in vitro: MFP1 decreased the rate of fiber growth, whereas MFP2 increased the growth rate.
机译:尽管A虫的精子运动与许多其他类型的爬行细胞中的精子运动非常相似,但驱动运动的层状脂质运动是基于主要精子蛋白(MSP)而非肌动蛋白对细胞骨架的调节而产生的。 A虫精子细胞骨架的动力学可以在无细胞体外系统中进行研究,该系统基于由MSP细丝束构成的纤维质膜囊泡的运动。除了ATP,MSP和质膜蛋白外,要在这种无细胞提取物中重建MSP活力还需要胞浆蛋白,这些蛋白可以协调MSP细丝的定点装配和捆绑,从而产生运动。在这里,我们确定了一部分由少量蛋白质组成但含有组装纤维所需的所有可溶性成分的胞质溶胶。我们已经纯化了其中两种蛋白,分别称为MSP纤维蛋白(MFP)1和2,并通过免疫标记法证明它们均位于细胞和纤维中的MSP细胞骨架中。这些蛋白质在体外对纤维的组装有相互影响:MFP1降低了纤维的生长速度,而MFP2则增加了纤维的生长速度。

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