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Wnt信号通路使秀丽隐杆线虫的早期卵裂球极化,从而区分内胚层和中胚层。

Wnt signaling polarizes an early C. elegans blastomere to distinguish endoderm from mesoderm.

作者信息

Thorpe C J, Schlesinger A, Carter J C, Bowerman B

机构信息

Institute of Molecular Biology, University of Oregon, Eugene 97403, USA.

出版信息

Cell. 1997 Aug 22;90(4):695-705. doi: 10.1016/s0092-8674(00)80530-9.

Abstract

A polarizing signal induces endoderm production by a 4-cell stage blastomere in C. elegans called EMS. We identified 16 mutations in five genes, mom-1 through mom-5, required for EMS to produce endoderm. mom-1, mom-2, and mom-3 are required in the signaling cell, P2, while mom-4 is required in EMS. P2 signaling downregulates an HMG domain protein, POP-1, in one EMS daughter. The sequence of mom-2 predicts that it encodes a member of the Wnt family of secreted glycoproteins, which in other systems activate HMG domain proteins. Defective mitotic spindle orientations in mom mutant embryos indicate that Wnt signaling influences cytoskeletal polarity in blastomeres throughout the early embryo.

摘要

极化信号通过秀丽隐杆线虫4细胞期的一个名为EMS的卵裂球诱导内胚层产生。我们在五个基因(mom-1至mom-5)中鉴定出16个突变,这些基因是EMS产生内胚层所必需的。mom-1、mom-2和mom-3在信号细胞P2中是必需的,而mom-4在EMS中是必需的。P2信号传导下调一个EMS子细胞中的一种HMG结构域蛋白POP-1。mom-2的序列预测它编码一种分泌型糖蛋白Wnt家族的成员,在其他系统中该家族成员可激活HMG结构域蛋白。mom突变体胚胎中有缺陷的有丝分裂纺锤体方向表明,Wnt信号传导影响早期胚胎中整个卵裂球的细胞骨架极性。

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