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有丝分裂和生殖细胞发育中着丝粒中心体 MTOC 的多面性。

The many faces of the bouquet centrosome MTOC in meiosis and germ cell development.

机构信息

Department of Developmental Biology and Cancer Research, The Hebrew University of Jerusalem Faculty of Medicine, Ein-Kerem Campus, Jerusalem, 9112102, Israel; Institute for Medical Research - Israel-Canada (IMRIC), Ein-Kerem Campus, Jerusalem 9112102, Israel.

Department of Developmental Biology and Cancer Research, The Hebrew University of Jerusalem Faculty of Medicine, Ein-Kerem Campus, Jerusalem, 9112102, Israel; Institute for Medical Research - Israel-Canada (IMRIC), Ein-Kerem Campus, Jerusalem 9112102, Israel.

出版信息

Curr Opin Cell Biol. 2023 Apr;81:102158. doi: 10.1016/j.ceb.2023.102158. Epub 2023 Mar 11.

Abstract

Meiotic chromosomal pairing is facilitated by a conserved cytoskeletal organization. Telomeres associate with perinuclear microtubules via Sun/KASH complexes on the nuclear envelope (NE) and dynein. Telomere sliding on perinuclear microtubules contributes to chromosome homology searches and is essential for meiosis. Telomeres ultimately cluster on the NE, facing the centrosome, in a configuration called the chromosomal bouquet. Here, we discuss novel components and functions of the bouquet microtubule organizing center (MTOC) in meiosis, but also broadly in gamete development. The cellular mechanics of chromosome movements and the bouquet MTOC dynamics are striking. The newly identified zygotene cilium mechanically anchors the bouquet centrosome and completes the bouquet MTOC machinery in zebrafish and mice. We hypothesize that various centrosome anchoring strategies evolved in different species. Evidence suggests that the bouquet MTOC machinery is a cellular organizer, linking meiotic mechanisms with gamete development and morphogenesis. We highlight this cytoskeletal organization as a new platform for creating a holistic understanding of early gametogenesis, with direct implications to fertility and reproduction.

摘要

减数分裂染色体配对是通过保守的细胞骨架组织来促进的。端粒通过核膜上的 Sun/KASH 复合物与核周微管相连,微管与动力蛋白相连。端粒在核周微管上的滑动有助于同源染色体搜索,是减数分裂所必需的。端粒最终在核膜上聚集,面向中心体,形成所谓的染色体花束。在这里,我们讨论了减数分裂中花束微管组织中心(MTOC)的新组成部分和功能,但也广泛讨论了配子发育。染色体运动的细胞力学和花束 MTOC 动力学引人注目。新发现的合线期纤毛机械地锚定了花束中心体,并在斑马鱼和小鼠中完成了花束 MTOC 机制。我们假设不同物种进化出了各种中心体锚定策略。有证据表明,花束 MTOC 机制是一种细胞组织者,将减数分裂机制与配子发育和形态发生联系起来。我们强调这种细胞骨架组织作为一个新的平台,用于全面理解早期配子发生,对生育和繁殖有直接影响。

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