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Centromere and telomere movements during early meiotic prophase of mouse and man are associated with the onset of chromosome pairing

机译:小鼠和人早期减数分裂前期的着丝粒和端粒运动与染色体配对的发生有关

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The preconditions and early steps of meiotic chromosome pairing were studied by fluorescence in situ hybridization (FISH) with chromosome- specific DNA probes to mouse and human testis tissue sections. Premeiotic pairing of homologous chromosomes was not detected in spermatogonia of the two species. FISH with centromere- and telomere- specific DNA probes in combination with immunostaining (IS) of synaptonemal complex (SC) proteins to testis sections of prepuberal mice at days 4-12 post partum was performed to study sequentially the meiotic pairing process. Movements of centromeres and then telomeres to the nuclear envelope, and of telomeres along the nuclear envelope leading to the formation of a chromosomal bouquet were detected during mouse prophase. At the bouquet stage, pairing of a mouse chromosome-8- specific probe was observed. SC-IS and simultaneous telomere FISH revealed that axial element proteins appear as large aggregates in mouse meiocytes when telomeres are attached to the nuclear envelope. Axial element formation initiates during tight telomere clustering and transverse filament-IS indicated the initiation of synapsis during this stage. Comparison of telomere and centromere distribution patterns of mouse and human meiocytes revealed movements of centromeres and then telomeres to the nuclear envelope and subsequent bouquet formation as conserved motifs of the pairing process. Chromosome painting in human spermatogonia revealed compacted, largely mutually exclusive chromosome territories. The territories developed into long, thin threads at the onset of meiotic prophase. Based on these results a unified model of the pairing process is proposed.
机译:减数分裂染色体配对的前提和早期步骤是通过荧光原位杂交(FISH)和染色体特异性DNA探针对小鼠和人睾丸组织切片进行研究的。在两个物种的精原细胞中未检测到同源染色体的减数分裂配对。在产后4-12天,用着丝粒和端粒特异性DNA探针与突触复合物(SC)蛋白免疫染色(IS)结合到青春期前小鼠睾丸切片的FISH进行研究,以依次研究减数分裂配对过程。在小鼠前期检测到着丝粒,端粒向核被膜的移动以及端粒沿核被膜的移动导致染色体束的形成。在花束期,观察到小鼠染色体8特异性探针的配对。 SC-IS和同时发生的端粒FISH揭示,当端粒附着在核膜上时,轴向元素蛋白在小鼠的肌细胞中以大的聚集体形式出现。在紧密的端粒聚集期间,轴向元件形成开始,并且横向丝状IS表明在该阶段突触的开始。小鼠和人的减数分裂细胞的端粒和着丝粒分布模式的比较显示出着丝粒的运动,然后是端粒到核被膜的移动以及随后的花束形成,这是配对过程的保守基序。人类精原细胞的染色体绘画显示出紧密的,互斥的染色体区域。在减数分裂前期开始时,这些区域发展成长而细的线。基于这些结果,提出了配对过程的统一模型。

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