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RIC-8(Synembryn)和GOA-1(G(o)α)在秀丽隐杆线虫早期胚胎发育过程中调节中心体运动的一个子集中的作用。

A role for RIC-8 (Synembryn) and GOA-1 (G(o)alpha) in regulating a subset of centrosome movements during early embryogenesis in Caenorhabditis elegans.

作者信息

Miller K G, Rand J B

机构信息

Program in Molecular and Cell Biology, Oklahoma Medical Research Foundation, Oklahoma City, Oklahoma 73104, USA.

出版信息

Genetics. 2000 Dec;156(4):1649-60. doi: 10.1093/genetics/156.4.1649.

Abstract

RIC-8 (synembryn) and GOA-1 (G(o)alpha) are key components of a signaling network that regulates neurotransmitter secretion in Caenorhabditis elegans. Here we show that ric-8 and goa-1 reduction of function mutants exhibit partial embryonic lethality. Through Nomarski analysis we show that goa-1 and ric-8 mutant embryos exhibit defects in multiple events that involve centrosomes, including one-cell posterior centrosome rocking, P(1) centrosome flattening, mitotic spindle alignment, and nuclear migration. In ric-8 reduction of function backgrounds, the embryonic lethality, spindle misalignments and delayed nuclear migration are strongly enhanced by a 50% reduction in maternal goa-1 gene dosage. Several other microfilament- and microtubule-mediated events, as well as overall embryonic polarity, appear unperturbed in the mutants. In addition, our results suggest that RIC-8 and GOA-1 do not have roles in centrosome replication, in the diametric movements of daughter centrosomes along the nuclear membrane, or in the extension of microtubules from centrosomes. Through immunostaining we show that GOA-1 (G(o)alpha) localizes to cell cortices as well as near centrosomes. Our results demonstrate that two components of a neuronal signal transduction pathway also play a role in centrosome movements during early embryogenesis.

摘要

RIC-8(synembryn)和GOA-1(G(o)α)是秀丽隐杆线虫中调节神经递质分泌的信号网络的关键组成部分。在此我们表明,ric-8和goa-1功能缺失突变体表现出部分胚胎致死性。通过微分干涉相差显微镜分析,我们发现goa-1和ric-8突变体胚胎在涉及中心体的多个事件中存在缺陷,包括单细胞期后中心体摆动、P(1)中心体扁平化、有丝分裂纺锤体排列以及核迁移。在ric-8功能缺失背景下,母本goa-1基因剂量减少50%会强烈增强胚胎致死率、纺锤体排列错误和核迁移延迟。突变体中其他一些微丝和微管介导的事件以及整体胚胎极性似乎未受干扰。此外,我们的结果表明,RIC-8和GOA-1在中心体复制、子中心体沿核膜的直径运动或中心体微管的延伸中不起作用。通过免疫染色,我们发现GOA-1(G(o)α)定位于细胞皮层以及中心体附近。我们的结果表明,神经元信号转导途径的两个组成部分在早期胚胎发育过程中的中心体运动中也发挥作用。

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