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Couples Pairs and Clusters: Mechanisms and Implications of Centromere Associations in Meiosis

机译:夫妻配对和群集:减数分裂中的着丝粒协会的机制和意义。

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摘要

Observations from a wide range of organisms show the centromeres form associations of pairs or small groups at different stages of meiotic prophase. Little is known about the functions or mechanisms of these associations, but in many cases synaptonemal complex elements seem to play a fundamental role. Two main associations are observed: homology-independent associations very early in the meiotic program – sometimes referred to as centromere coupling, and a later association of homologous centromeres, referred to as centromere pairing or tethering. The later centromere pairing initiates during synaptonemal complex assembly, then persists after the dissolution of the synaptonemal complex. While the function of the homology-independent centromere coupling remains a mystery, centromere pairing appears to have a direct impact on the chromosome segregation fidelity of achiasmatic chromosomes. Recent work in yeast, Drosophila, and mice suggest centromere pairing is a previously unappreciated, general meiotic feature that may promote meiotic segregation fidelity of the exchange and non-exchange chromosomes.
机译:从广泛的生物体中观察到,着丝粒在减数分裂前期的不同阶段以成对或小群的形式关联。关于这些协会的功能或机制知之甚少,但在许多情况下,突触复合物似乎起着基本作用。观察到两个主要关联:在减数分裂程序中​​很早就存在与同源无关的关联(有时称为着丝粒耦合),后来又有同源着丝粒的关联(称为着丝粒配对或系链)。后面的着丝粒配对在突触复合体组装过程中开始,然后在突触复合体溶解后继续存在。尽管不依赖同源性的着丝粒耦合的功能仍然是一个谜,但是着丝粒配对似乎对非全向染色体的染色体分离保真度具有直接影响。酵母,果蝇和小鼠的最新研究表明,着丝粒对是一种以前未曾认识到的普遍减数分裂特征,可促进交换和非交换染色体的减数分裂分离保真度。

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