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首页> 外文期刊>Nature Communications >Vertebrate myosin?1d regulates left–right organizer morphogenesis and laterality
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Vertebrate myosin?1d regulates left–right organizer morphogenesis and laterality

机译:脊椎动物肌球蛋白1d调节左右组织者的形态发生和侧向

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摘要

Establishing left–right asymmetry is a fundamental process essential for arrangement of visceral organs during development. In vertebrates, motile cilia-driven fluid flow in the left–right organizer (LRO) is essential for initiating symmetry breaking event. Here, we report that myosin 1d (myo1d) is essential for establishing left–right asymmetry in zebrafish. Using super-resolution microscopy, we show that the zebrafish LRO, Kupffer’s vesicle (KV), fails to form a spherical lumen and establish proper unidirectional flow in the absence of myo1d. This process requires directed vacuolar trafficking in KV epithelial cells. Interestingly, the vacuole transporting function of zebrafish Myo1d can be substituted by myosin1C derived from an ancient eukaryote, Acanthamoeba castellanii, where it regulates the transport of contractile vacuoles. Our findings reveal an evolutionary conserved role for an unconventional myosin in vacuole trafficking, lumen formation, and determining laterality.
机译:建立左右不对称性是发育过程中内脏器官排列必不可少的基本过程。在脊椎动物中,运动的纤毛驱动的流体在左右组织器(LRO)中流动对于启动对称破坏事件至关重要。在这里,我们报告肌球蛋白1d(myo1d)对于建立斑马鱼的左右不对称性至关重要。使用超分辨率显微镜,我们发现斑马鱼LRO(库普弗囊泡(KV))在没有肌醇的情况下无法形成球形内腔并无法建立适当的单向流动。此过程需要在KV上皮细胞中直接进行液泡运输。有趣的是,斑马鱼Myo1d的液泡转运功能可以被源自古代真核生物棘阿米巴castellanii的myosin1C取代,它在其中调节收缩液泡的转运。我们的发现揭示了非常规肌球蛋白在液泡运输,管腔形成和确定侧向性方面的进化保守作用。

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