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Translation of polarity cues into asymmetric spindle positioning in Caenorhabditis elegans embryos

机译:秀丽隐杆线虫胚胎中极性提示转换为不对称纺锤体定位

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Asymmetric divisions are crucial for generating cell diversity; they rely on coupling between polarity cues and spindle positioning, but how this coupling is achieved is poorly understood. In one-cell stage Caenorhabditis elegans embryos, polarity cues set by the PAR proteins mediate asymmetric spindle positioning by governing an imbalance of net pulling forces acting on spindle poles. We found that the GoLoco-containing proteins GPR-1 and GPR-2, as well as the Galpha subunits GOA-1 and GPA-16, were essential for generation of proper pulling forces. GPR-1/2 interacted with guanosine diphosphate-bound GOA-1 and were enriched on the posterior cortex in a par-3- and par-2-dependent manner. Thus, the extent of net pulling forces may depend on cortical Galpha activity, which is regulated by anterior-posterior polarity cues through GPR-1/2. [References: 26]
机译:非对称分裂对于产生细胞多样性至关重要。它们依赖于极性提示和主轴定位之间的耦合,但是如何实现这种耦合却知之甚少。在单细胞阶段秀丽隐杆线虫胚胎中,由PAR蛋白设定的极性提示通过控制作用在纺锤极上的净拉力的不平衡来介导纺锤的不对称定位。我们发现,含有GoLoco的蛋白质GPR-1和GPR-2,以及Galpha亚基GOA-1和GPA-16,对于产生适当的拉力至关重要。 GPR-1 / 2与鸟苷二磷酸结合的GOA-1相互作用,并以par-3和par-2依赖性方式富集在后皮质。因此,净拉力的大小可能取决于皮质Galpha活性,该活性受GPR-1 / 2前后极性提示的调节。 [参考:26]

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