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A Ser/Thr Kinase Required for Membrane-associated Assembly of the Major Sperm Protein Motility Apparatus in the Amoeboid Sperm of Ascaris

机译:A虫的Amoeboid精子中主要精子蛋白运动装置的膜相关组装所需的Ser / Thr激酶。

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摘要

Leading edge protrusion in the amoeboid sperm of Ascaris suum is driven by the localized assembly of the major sperm protein (MSP) cytoskeleton in the same way that actin assembly powers protrusion in other types of crawling cell. Reconstitution of this process in vitro led to the identification of two accessory proteins required for MSP polymerization: an integral membrane phosphoprotein, MSP polymerization–organizing protein (MPOP), and a cytosolic component, MSP fiber protein 2 (MFP2). Here, we identify and characterize a 34-kDa cytosolic protein, MSP polymerization–activating kinase (MPAK) that links the activities of MPOP and MFP2. Depletion/add-back assays of sperm extracts showed that MPAK, which is a member of the casein kinase 1 family of Ser/Thr protein kinases, is required for motility. MPOP and MPAK comigrated by native gel electrophoresis, coimmunoprecipitated, and colocalized by immunofluorescence, indicating that MPOP binds to and recruits MPAK to the membrane surface. MPAK, in turn, phosphorylated MFP2 on threonine residues, resulting in incorporation of MFP2 into the cytoskeleton. Beads coated with MPAK assembled a surrounding cloud of MSP filaments when incubated in MPAK-depleted sperm extract, but only when supplemented with detergent-solubilized MPOP. Our results suggest that interactions involving MPOP, MPAK, and MFP2 focus MSP polymerization to the plasma membrane at the leading edge of the cell thereby generating protrusion and minimizing nonproductive filament formation elsewhere.
机译:A虫的变形虫精子中的前缘突起是由主要精子蛋白(MSP)细胞骨架的局部组装驱动的,其方式与肌动蛋白组装为其他类型的爬行细胞中的突起提供动力的方式相同。体外重组该过程导致鉴定了MSP聚合所需的两个辅助蛋白:整体膜磷蛋白,MSP聚合组织蛋白(MPOP)和胞质成分MSP纤维蛋白2(MFP2)。在这里,我们鉴定并鉴定了一个34 kDa的胞质蛋白MSP聚合激活激酶(MPAK),该蛋白将MPOP和MFP2的活性联系起来。精子提取物的耗竭/加回试验表明,MPAK是酪蛋白激酶1家族Ser / Thr蛋白激酶的成员,是运动所必需的。 MPOP和MPAK通过天然凝胶电泳进行迁移,共免疫沉淀和通过免疫荧光共定位,表明MPOP结合并吸收了MPAK膜表面。反过来,MPAK使苏氨酸残基上的MFP2磷酸化,从而导致MFP2掺入细胞骨架。当在贫MPAK的精子提取物中孵育时,涂有MPAK的珠子会聚集周围的MSP细丝云团,但仅当添加了去污剂溶解的MPOP时才如此。我们的结果表明,涉及MPOP,MPAK和MFP2的相互作用将MSP聚合聚焦到细胞前缘的质膜上,从而产生突起并最大程度地减少其他地方的非生产性长丝形成。

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