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Mitochondrial fusion protein MFN2 interacts with the mitostatin-related protein MNS1 required for mouse sperm flagellar structure and function

机译:线粒体融合蛋白MFN2与小鼠精子鞭毛结构和功能所需的丝裂抑素相关蛋白MNS1相互作用

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摘要

BackgroundCilia and the sperm flagellum share many structural properties. Meiosis-specific nuclear structural 1 (MNS1) is a recently characterized protein that is abundantly expressed in post-meiotic spermatids and is required for proper flagellar and motile cilia formation. To explore the possible functions of MNS1, we performed a BLAST search and determined it is homologous to the conserved domain pfam13868, exemplified by mitostatin. This protein interacts with mitofusin 2 (MFN2), a protein that participates in regulating mitochondrial associations to subcellular organelles. We hypothesized that an association between MFN2 and MNS1 in the sperm is involved in flagellar biogenesis and function.
机译:背景纤毛和精子鞭毛具有许多结构特性。减数分裂特异性核结构1(MNS1)是最近表征的蛋白质,在减数分裂后的精子中大量表达,是正常鞭毛和运动性纤毛形成所必需的。为了探索MNS1的可能功能,我们进行了BLAST搜索,并确定它与保守域pfam13868同源,例如丝裂抑素。该蛋白与线粒体蛋白2(MFN2)相互作用,该蛋白参与调节线粒体与亚细胞器的结合。我们假设精子中MFN2和MNS1之间的关联与鞭毛的生物发生和功能有关。

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