首页> 外文期刊>The Journal of Reproduction and Development >Stage-dependent remodeling of the nuclear envelope and lamina during rabbit early embryonic development
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Stage-dependent remodeling of the nuclear envelope and lamina during rabbit early embryonic development

机译:兔早期胚胎发育过程中核膜和叶片的阶段依赖性重塑

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摘要

Utilizing 3D structured illumination microscopy, we investigated the quality and quantity of nuclear invaginations and the distribution of nuclear pores during rabbit early embryonic development and identified the exact time point of nucleoporin 153 (NUP153) association with chromatin during mitosis. Contrary to bovine early embryonic nuclei, featuring almost exclusively nuclear invaginations containing a small volume of cytoplasm, nuclei in rabbit early embryonic stages show additionally numerous invaginations containing a large volume of cytoplasm. Small-volume invaginations frequently emanated from large-volume nuclear invaginations but not vice versa, indicating a different underlying mechanism. Large and small-volume nuclear envelope invaginations required the presence of chromatin, as they were restricted to chromatin positive areas. The chromatin-free contact areas between nucleolar precursor bodies (NPBs) and large-volume invaginations were free of nuclear pores. Small-volume invaginations were not in contact with NPBs. The number of invaginations and isolated intranuclear vesicles per nucleus peaked at the 4-cell stage. At this stage, the nuclear surface showed highly concentrated clusters of nuclear pores surrounded by areas free of nuclear pores. Isolated intranuclear lamina vesicles were usually NUP153 negative. Cytoplasmic, randomly distributed NUP153-positive clusters were highly abundant at the zygote stage and decreased in number until they were almost absent at the 8-cell stage and later. These large NUP153 clusters may represent a maternally provided NUP153 deposit, but they were not visible as clusters during mitosis. Major genome activation at the 8- to 16-cell stage may mark the switch from a necessity for a deposit to on-demand production. NUP153 association with chromatin is initiated during metaphase before the initiation of the regeneration of the lamina. To our knowledge, the present study demonstrates for the first time major remodeling of the nuclear envelope and its underlying lamina during rabbit preimplantation development.
机译:利用3D结构照明显微镜,我们调查了兔子早期胚胎发育过程中核内陷的质量和数量以及核孔的分布,并确定了核孔蛋白153(NUP153)与有丝分裂期间染色质缔合的确切时间点。与牛早期胚胎细胞核(几乎只包含少量细胞质的核内陷)相反,兔早期胚胎阶段的细胞核还显示出大量包含大量细胞质的内陷。小批量入侵经常源于大批量核入侵,但反之则不然,这表明存在不同的潜在机制。大体积和小体积核包膜的内陷都需要染色质的存在,因为它们仅限于染色质阳性区域。核仁前体(NPB)与大体积内陷之间的无染色质接触区域没有核孔。小批量植入未与NPB接触。每个核的内陷和分离的核内囊泡数量在4细胞阶段达到峰值。在这一阶段,核表面显示出高度集中的核孔簇,周围被无核孔的区域包围。分离的核内板层囊泡通常为NUP153阴性。细胞质,随机分布的NUP153阳性簇在合子期高度丰富,数量减少,直到在8细胞期及以后几乎不存在。这些大的NUP153簇可能代表了母体提供的NUP153沉积物,但在有丝分裂期间看不到它们。在8到16个细胞阶段的主要基因组激活可能标志着从存款的需要向按需生产的转变。 NUP153与染色质的缔合在叶片再生开始之前的中期开始。据我们所知,本研究首次证明了在兔植入前发育过程中核包膜及其下层的重大重塑。

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