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染色体乘客蛋白birc5b在斑马鱼胚胎中组织微丝和生殖质。

The chromosomal passenger protein birc5b organizes microfilaments and germ plasm in the zebrafish embryo.

作者信息

Nair Sreelaja, Marlow Florence, Abrams Elliott, Kapp Lee, Mullins Mary C, Pelegri Francisco

机构信息

Laboratory of Genetics, University of Wisconsin-Madison, Madison, Wisconsin, United States of America.

出版信息

PLoS Genet. 2013 Apr;9(4):e1003448. doi: 10.1371/journal.pgen.1003448. Epub 2013 Apr 18.

Abstract

Microtubule-microfilament interactions are important for cytokinesis and subcellular localization of proteins and mRNAs. In the early zebrafish embryo, astral microtubule-microfilament interactions also facilitate a stereotypic segregation pattern of germ plasm ribonucleoparticles (GP RNPs), which is critical for their eventual selective inheritance by germ cells. The precise mechanisms and molecular mediators for both cytoskeletal interactions and GP RNPs segregation are the focus of intense research. Here, we report the molecular identification of a zebrafish maternal-effect mutation motley as Birc5b, a homolog of the mammalian Chromosomal Passenger Complex (CPC) component Survivin. The meiosis and mitosis defects in motley/birc5b mutant embryos are consistent with failed CPC function, and additional defects in astral microtubule remodeling contribute to failures in the initiation of cytokinesis furrow ingression. Unexpectedly, the motley/birc5b mutation also disrupts cortical microfilaments and GP RNP aggregation during early cell divisions. Birc5b localizes to the tips of astral microtubules along with polymerizing cortical F-actin and the GP RNPs. Mutant Birc5b co-localizes with cortical F-actin and GP RNPs, but fails to associate with astral microtubule tips, leading to disorganized microfilaments and GP RNP aggregation defects. Thus, maternal Birc5b localizes to astral microtubule tips and associates with cortical F-actin and GP RNPs, potentially linking the two cytoskeletons to mediate microtubule-microfilament reorganization and GP RNP aggregation during early embryonic cell cycles in zebrafish. In addition to the known mitotic function of CPC components, our analyses reveal a non-canonical role for an evolutionarily conserved CPC protein in microfilament reorganization and germ plasm aggregation.

摘要

微管-微丝相互作用对于胞质分裂以及蛋白质和mRNA的亚细胞定位很重要。在斑马鱼早期胚胎中,星状微管-微丝相互作用还促进了生殖质核糖核蛋白颗粒(GP RNPs)的刻板分离模式,这对于生殖细胞最终对它们的选择性遗传至关重要。细胞骨架相互作用和GP RNPs分离的精确机制及分子介质是深入研究的重点。在此,我们报告了斑马鱼母源性效应突变体杂色(motley)的分子鉴定结果,它是哺乳动物染色体乘客复合体(CPC)组分Survivin的同源物Birc5b。杂色/motley/birc5b突变体胚胎中的减数分裂和有丝分裂缺陷与CPC功能失败一致,星状微管重塑的其他缺陷导致胞质分裂沟侵入起始失败。出乎意料的是,杂色/motley/birc5b突变在早期细胞分裂过程中还破坏了皮质微丝和GP RNPs聚集。Birc5b与聚合的皮质F-肌动蛋白和GP RNPs一起定位于星状微管的末端。突变型Birc5b与皮质F-肌动蛋白和GP RNPs共定位,但未能与星状微管末端结合,导致微丝紊乱和GP RNPs聚集缺陷。因此,母源性Birc5b定位于星状微管末端,并与皮质F-肌动蛋白和GP RNPs结合,可能连接两个细胞骨架以介导斑马鱼早期胚胎细胞周期中的微管-微丝重组和GP RNPs聚集。除了CPC组分已知的有丝分裂功能外,我们的分析揭示了一种进化保守的CPC蛋白在微丝重组和生殖质聚集方面的非经典作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb7a/3630083/dea1a3c1c75a/pgen.1003448.g001.jpg

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