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Kid-mediated chromosome compaction ensures proper nuclear envelope formation

机译:孩子介导的染色体压实确保了适当的核包封形成

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Toward the end of mitosis, neighboring chromosomes gather closely to form a compact cluster. This is important for reassembling the nuclear envelope around the entire chromosome mass but not individual chromosomes. By analyzing mice and cultured cells lacking the expression of chromokinesin Kid/kinesin-10, we show that Kid localizes to the boundaries of anaphase and telophase chromosomes and contributes to the shortening of the anaphase chromosome mass along the spindle axis. Loss of Kid-mediated anaphase chromosome compaction often causes the formation of multinucleated cells, specifically at oocyte meiosis II and the first couple of mitoses leading to embryonic death. In contrast, neither male meiosis nor somatic mitosis after the morula-stage is affected by Kid deficiency. These data suggest that Kid-mediated anaphase/telophase chromosome compaction prevents formation of multinucleated cells. This protection is especially important during the very early stages of development, when the embryonic cells are rich in ooplasm.
机译:朝向有丝分裂结束时,相邻的染色体收集紧密地形成紧凑簇。这对于重新组装核心围绕整个染色体物质而不是单独的染色体来说很重要。通过分析小鼠和培养细胞缺乏色调儿童/ kinesin-10的表达,我们表明孩子定位于后染色和茶酶染色体的界限,并有助于沿着主轴轴线缩短染色体染色体质量。丧失儿童介导的后期染色体压实通常导致多核细胞的形成,特别是在卵母细胞减数分裂II和第一次导致胚胎死亡的动脉瘤。相比之下,森林阶段受儿童缺乏的影响后,既不是男性减数病也不是体细菌病。这些数据表明,儿童介导的后期/茶酶染色体压实可防止形成多核细胞。当胚胎细胞富含胚芽肿时,这种保护在早期的发展阶段尤其重要。

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