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Structured illumination microscopy imaging reveals localization of replication protein A between chromosome lateral elements during mammalian meiosis

机译:结构照明显微镜成像揭示了哺乳动物减数分裂过程中复制蛋白A在染色体侧向元素之间的定位

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摘要

An important event enabling meiotic prophase I to proceed is the close juxtaposition of conjoined chromosome axes of homologs and their assembly via an array of transverse filaments and meiosis-specific axial elements into the synaptonemal complex (SC). During meiosis, recombination requires the establishment of a platform for recombinational interactions between the chromosome axes and their subsequent stabilization. This is essential for ensuring crossover recombination and proper segregation of homologous chromosomes. Thus, well-established SCs are essential for supporting these processes. The regulation of recombination intermediates on the chromosome axis/SC and dynamic positioning of double-strand breaks are not well understood. Here, using super-resolution microscopy (structured illumination microscopy), we determined the localization of the replication protein A (RPA) complex on the chromosome axes in the early phase of leptonema/zygonema and within the CEs of SC in the pachynema during meiotic prophase in mouse spermatocytes. RPA, which marks the intermediate steps of pairing and recombination, appears in large numbers and is positioned on the chromosome axes at the zygonema. In the pachynema, RPA foci are reduced but do not completely disappear; instead, they are placed between lateral elements. Our results reveal the precise structure of SC and localization dynamics of recombination intermediates on meiocyte chromosomes undergoing homolog pairing and meiotic recombination.
机译:使减数分裂前期I继续进行的一个重要事件是同系物的相连染色体轴紧密并置,并通过一系列横丝和减数分裂特异的轴向元件将它们组装成突触复合体(SC)。在减数分裂期间,重组需要建立一个平台,用于染色体轴之间的重组相互作用及其随后的稳定化。这对于确保交叉重组和正确分离同源染色体至关重要。因此,完善的SC对于支持这些过程至关重要。重组中间体在染色体轴/ SC上的调控以及双链断裂的动态定位尚不十分清楚。在这里,使用超分辨率显微镜(结构照明显微镜),我们确定了复制蛋白A(RPA)复合体在瘦素/ zygonema的早期染色体轴上以及减数分裂前期在早幼生殖器官的SC内的定位。在小鼠的精母细胞中。 RPA标记着配对和重组的中间步骤,大量出现并位于zygonema的染色体轴上。在早产儿,RPA灶减少,但没有完全消失。而是将它们放置在横向元素之间。我们的结果揭示了SC的精确结构和重组中间体在经历同源配对和减数分裂重组的单核细胞染色体上的定位动力学。

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