精子发生过程中的核伸长取决于果蝇Mst27D核孔复合物与捆绑微管的物理连接。

IF 4.5 2区 生物学 Q1 Agricultural and Biological Sciences PLoS Genetics Pub Date : 2023-07-01 DOI:10.1371/journal.pgen.1010837
Pengfei Li, Giovanni Messina, Christian F Lehner
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引用次数: 0

摘要

动物的精子通常是高度细长的细胞,有一条长而可运动的尾巴附着在头部,头部包含单倍体基因组,细胞核紧凑且通常呈细长状。在黑腹果蝇中,在精子发生过程中,细胞核的体积被压缩了200倍,并被重新塑造成一根比直径长30倍的针。核延伸是由核孔复合物(NPCs)的重新定位引起的。虽然npc最初位于早期圆形精子的球形核周围的整个核膜(NE),但它们后来被限制在一个半球。在这个含有npc的NE附近的细胞质中,所谓的致密复合体与一束强微管聚集在一起。虽然这种明显的接近性证明了NPC-NE和微管束的功能重要性,但尚未有实验证实它们对核伸长的贡献。我们对精细胞特异性Mst27D蛋白的功能表征现在解决了这一缺陷。我们证明Mst27D在NPC-NE和致密复合物之间建立了物理联系。Mst27D的c端区与核孔蛋白Nup358结合。Mst27D的n端CH结构域与EB1家族蛋白相似,与微管结合。在高表达水平下,Mst27D促进培养细胞中的微管捆绑。显微分析表明Mst27D与Nup358和致密复合物的微管束共定位。延时成像显示核延伸伴随着微管逐渐捆绑成一个细长的束。在Mst27D零突变体中,这种捆绑过程不发生,核伸长异常。因此,我们提出Mst27D通过促进NPC-NE附着于致密复合物的微管以及这些微管的逐渐捆绑,从而允许正常的核延伸。
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Nuclear elongation during spermiogenesis depends on physical linkage of nuclear pore complexes to bundled microtubules by Drosophila Mst27D.

Spermatozoa in animal species are usually highly elongated cells with a long motile tail attached to a head that contains the haploid genome in a compact and often elongated nucleus. In Drosophila melanogaster, the nucleus is compacted two hundred-fold in volume during spermiogenesis and re-modeled into a needle that is thirty-fold longer than its diameter. Nuclear elongation is preceded by a striking relocalization of nuclear pore complexes (NPCs). While NPCs are initially located throughout the nuclear envelope (NE) around the spherical nucleus of early round spermatids, they are later confined to one hemisphere. In the cytoplasm adjacent to this NPC-containing NE, the so-called dense complex with a strong bundle of microtubules is assembled. While this conspicuous proximity argued for functional significance of NPC-NE and microtubule bundle, experimental confirmation of their contributions to nuclear elongation has not yet been reported. Our functional characterization of the spermatid specific Mst27D protein now resolves this deficit. We demonstrate that Mst27D establishes physical linkage between NPC-NE and dense complex. The C-terminal region of Mst27D binds to the nuclear pore protein Nup358. The N-terminal CH domain of Mst27D, which is similar to that of EB1 family proteins, binds to microtubules. At high expression levels, Mst27D promotes bundling of microtubules in cultured cells. Microscopic analyses indicated co-localization of Mst27D with Nup358 and with the microtubule bundles of the dense complex. Time-lapse imaging revealed that nuclear elongation is accompanied by a progressive bundling of microtubules into a single elongated bundle. In Mst27D null mutants, this bundling process does not occur and nuclear elongation is abnormal. Thus, we propose that Mst27D permits normal nuclear elongation by promoting the attachment of the NPC-NE to the microtubules of the dense complex, as well as the progressive bundling of these microtubules.

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来源期刊
PLoS Genetics
PLoS Genetics 生物-遗传学
CiteScore
8.10
自引率
2.20%
发文量
438
审稿时长
1 months
期刊介绍: PLOS Genetics is run by an international Editorial Board, headed by the Editors-in-Chief, Greg Barsh (HudsonAlpha Institute of Biotechnology, and Stanford University School of Medicine) and Greg Copenhaver (The University of North Carolina at Chapel Hill). Articles published in PLOS Genetics are archived in PubMed Central and cited in PubMed.
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