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首页> 外文期刊>Developmental biology >Caenorhabditis elegans anillin (ani-1) regulates neuroblast cytokinesis and epidermal morphogenesis during embryonic development
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Caenorhabditis elegans anillin (ani-1) regulates neuroblast cytokinesis and epidermal morphogenesis during embryonic development

机译:秀丽隐杆线虫茴香(ani-1)在胚胎发育过程中调节神经母细胞胞质分裂和表皮形态发生

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摘要

The formation of tissues is essential for metazoan development. During Caenorhabditis elegans embryogenesis, ventral epidermal cells migrate to encase the ventral surface of the embryo in a layer of epidermis by a process known as ventral enclosure. This process is regulated by guidance cues secreted by the underlying neuroblasts. However, since the cues and their receptors are differentially expressed in multiple cell types, the role of the neuroblasts in ventral enclosure is not fully understood. Furthermore, although F-actin is required for epidermal cell migration, it is not known if nonmuscle myosin is also required. Anillin (ANI-1) is an actin and myosin-binding protein that coordinates actin-myosin contractility in the early embryo. Here, we show that ANI-1 localizes to the cleavage furrows of dividing neuroblasts during mid-embryogenesis and is required for their division. Embryos depleted of ani-1 display a range of ventral enclosure phenotypes, where ventral epidermal cells migrate with similar speeds to control embryos, but contralateral neighbors often fail to meet and are misaligned. The ventral enclosure phenotypes in ani-1 RNAi embryos suggest that the position or shape of neuroblasts is important for directing ventral epidermal cell migration, although does not rule out an autonomous requirement for ani-1 in the epidermal cells. Furthermore, we show that rho-1 and other regulators of nonmuscle myosin activity are required for ventral epidermal cell migration. Interestingly, altering nonmuscle myosin contractility alleviates or strengthens ani-1's ventral enclosure phenotypes. Our findings suggest that ventral enclosure is a complex process that likely relies on inputs from multiple tissues.
机译:组织的形成对于后生动物发育至关重要。秀丽隐杆线虫胚胎发生期间,腹侧表皮细胞迁移,通过称为腹侧包封的过程将胚的腹表面包裹在表皮层中。该过程由潜在的成神经细胞分泌的指导信号调节。但是,由于提示和它们的受体在多种细胞类型中差异表达,因此对神经母细胞在腹腔中的作用还没有完全了解。此外,尽管F-肌动蛋白是表皮细胞迁移所必需的,但尚不清楚是否还需要非肌肉肌球蛋白。 Anillin(ANI-1)是一种肌动蛋白和肌球蛋白结合蛋白,可协调早期胚胎中的肌动蛋白-肌球蛋白收缩力。在这里,我们显示ANI-1在胚胎中期发生时位于分裂成神经细胞的裂沟中,这是它们分裂所必需的。耗尽ani-1的胚胎表现出一系列的腹围表型,其中腹侧表皮细胞以相似的速度迁移以控制胚胎,但是对侧邻居通常无法见面且排列错位。 ani-1 RNAi胚胎的腹侧表型表明,成神经细胞的位置或形状对于指导腹侧表皮细胞迁移很重要,尽管这并不排除对表皮细胞中ani-1的自主需求。此外,我们表明,rho-1和其他肌无肌球蛋白活性的调节剂是腹侧表皮细胞迁移所必需的。有趣的是,改变非肌肉肌球蛋白的收缩力可减轻或增强ani-1的腹围表型。我们的发现表明,腹腔封闭是一个复杂的过程,可能依赖于来自多个组织的输入。

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