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Meiotic cohesin STAG3 is required for chromosome axis formation and sister chromatid cohesion

机译:减数分裂黏附素STAG3是染色体轴形成和姐妹染色单体黏​​附所必需的

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摘要

The cohesin complex is essential for mitosis and meiosis. The specific meiotic roles of individual cohesin proteins are incompletely understood. We report in vivo functions of the only meiosis-specific STAG component of cohesin, STAG3. Newly generated STAG3-deficient mice of both sexes are sterile with meiotic arrest. In these mice, meiotic chromosome architecture is severely disrupted as no bona fide axial elements (AE) form and homologous chromosomes do not synapse. Axial element protein SYCP3 forms dot-like structures, many partially overlapping with centromeres. Asynapsis marker HORMAD1 is diffusely distributed throughout the chromatin, and SYCP1, which normally marks synapsed axes, is largely absent. Centromeric and telomeric sister chromatid cohesion are impaired. Centromere and telomere clustering occurs in the absence of STAG3, and telomere structure is not severely affected. Other cohesin proteins are present, localize throughout the STAG3-devoid chromatin, and form complexes with cohesin SMC1β. No other deficiency in a single meiosis-specific cohesin causes a phenotype as drastic as STAG3 deficiency. STAG3 emerges as the key STAG cohesin involved in major functions of meiotic cohesin.
机译:粘着蛋白复合物对于有丝分裂和减数分裂是必不可少的。单个粘附蛋白蛋白的具体减数分裂作用尚不完全清楚。我们报告的黏附素,STAG3唯一减数分裂特定STAG组件的体内功能。两性的新产生的STAG3缺陷型小鼠均具有减数分裂停滞的无菌性。在这些小鼠中,减数分裂染色体的结构被严重破坏,因为没有真正的轴向元件(AE)形成且同源染色体不发生突触。轴蛋白SYCP3形成点状结构,许多与着丝粒部分重叠。突触标记物HORMAD1分散分布在整个染色质中,通常不标记通常突触轴的SYCP1。着丝粒和端粒姐妹染色单体的内聚力受损。在不存在STAG3的情况下发生着丝粒和端粒的聚类,并且不会严重影响端粒的结构。存在其他黏附蛋白蛋白,遍布整个STAG3缺失染色质,并与黏附蛋白SMC1β形成复合物。单个减数分裂特异性黏着蛋白的其他缺陷均不会导致像STAG3缺陷一样剧烈的表型。 STAG3成为参与减数分裂粘附素主要功能的关键STAG粘附素。

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