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首页> 外文期刊>Journal of Biophysical and Biochemical Cytology >Phosphorylation of the synaptonemal complex protein SYP-1 promotes meiotic chromosome segregation
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Phosphorylation of the synaptonemal complex protein SYP-1 promotes meiotic chromosome segregation

机译:Synaptonemal复合蛋白Syp-1的磷酸化促进了减数分裂染色体隔离

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Chromosomes that have undergone crossing over in meiotic prophase must maintain sister chromatid cohesion somewhere along their length between the first and second meiotic divisions. Although many eukaryotes use the centromere as a site to maintain cohesion, the holocentric organism Caenorhabditis elegans instead creates two chromosome domains of unequal length termed the short arm and long arm, which become the first and second site of cohesion loss at meiosis I and II. The mechanisms that confer distinct functions to the short and long arm domains remain poorly understood. Here, we show that phosphorylation of the synaptonemal complex protein SYP-1 is required to create these domains. Once crossover sites are designated, phosphorylated SYP-1 and PLK-2 become cooperatively confined to short arms and guide phosphorylated histone H3 and the chromosomal passenger complex to the site of meiosis I cohesion loss. Our results show that PLK-2 and phosphorylated SYP-1 ensure creation of the short arm subdomain, promoting disjunction of chromosomes in meiosis I.
机译:在减数分裂预言中交叉过桥的染色体必​​须在第一和第二减数分裂划分之间沿着它们的长度维持姐妹染色体内聚力。虽然许多真核生物使用Centromere作为维持凝聚力的位点,但全能的生物体Caenorhabdise秀丽隐杆线虫,而是形成两个不等长度的染色体域,这些染色体域名被称为短臂和长臂,这成为MeIosis I和II的第一和第二次粘连损失部位。将不同功能赋予短和长臂域不同的机制仍然很糟糕。在这里,我们表明,Synaponemal复合蛋白SYP-1的磷酸化是需要创造这些结构域。一旦指定了交叉位点,磷酸化的SYP-1和PLK-2就会被局限于短臂并引导磷酸化的组蛋白H3和染色体乘客综合体,到I阴茎损失的分裂损失。我们的研究结果表明,PLK-2和磷酸化的SYP-1确保了短臂亚域的创建,促进了MeIosis I中的染色体的脱位。

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