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Condensins I and II are essential for construction of bivalent chromosomes in mouse oocytes

机译:凝集素I和II对构建小鼠卵母细胞中的二价染色体至关重要

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摘要

In many eukaryotes, condensins I and II associate with chromosomes in an ordered fashion during mitosis and play nonoverlapping functions in their assembly and segregation. Here we report for the first time the spatiotemporal dynamics and functions of the two condensin complexes during meiotic divisions in mouse oocytes. At the germinal vesicle stage (prophase I), condensin I is present in the cytoplasm, whereas condensin II is localized within the nucleus. After germinal vesicle breakdown, condensin II starts to associate with chromosomes and becomes concentrated onto chromatid axes of bivalent chromosomes by metaphase I. REC8 “glues” chromosome arms along their lengths. In striking contrast to condensin II, condensin I localizes primarily around centromeric regions at metaphase I and starts to associate stably with chromosome arms only after anaphase I. Antibody injection experiments show that condensin functions are required for many aspects of meiotic chromosome dynamics, including chromosome individualization, resolution, and segregation. We propose that the two condensin complexes play distinctive roles in constructing bivalent chromosomes: condensin II might play a primary role in resolving sister chromatid axes, whereas condensin I might contribute to monopolar attachment of sister kinetochores, possibly by assembling a unique centromeric structure underneath.
机译:在许多真核生物中,凝聚素I和II在有丝分裂过程中与染色体有序结合,并在其组装和分离中发挥不重叠的功能。在这里,我们首次报道了小鼠卵母细胞减数分裂期间两种缩合蛋白复合物的时空动力学和功能。在生小泡阶段(前期I),凝集素I存在于细胞质中,而凝集素II位于细胞核内。生胚囊泡破裂后,凝缩蛋白II开始与染色体缔合,并在中期I集中到二价染色体的染色轴上。REC8沿其长度“粘合”染色体臂。与凝聚素II形成鲜明对比的是,凝聚素I主要位于中期I的着丝粒区域附近,并且仅在后期I之后才开始与染色体臂稳定结合。抗体注射实验表明,凝聚素功能是减数分裂染色体动力学的许多方面所必需的,包括染色体个体化,解决和隔离。我们建议这两个凝聚素复合物在构建二价染色体中起着独特的作用:凝聚素II可能在解析姐妹染色单体轴中起主要作用,而凝聚素I可能通过在下面组装独特的着丝粒结构来促进姐妹动粒的单极附着。

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