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The Axial Element Protein DESYNAPTIC2 Mediates Meiotic Double-Strand Break Formation and Synaptonemal Complex Assembly in Maize

机译:轴向元素蛋白DESYNAPTIC2介导玉米减数分裂双链断裂形成和联会复合体装配。

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摘要

During meiosis, homologous chromosomes pair and recombine via repair of programmed DNA double-strand breaks (DSBs). DSBs are formed in the context of chromatin loops, which are anchored to the proteinaceous axial element (AE). The AE later serves as a framework to assemble the synaptonemal complex (SC) that provides a transient but tight connection between homologous chromosomes. Here, we showed that DESYNAPTIC2 (DSY2), a coiled-coil protein, mediates DSB formation and is directly involved in SC assembly in maize (Zea mays). The dsy2 mutant exhibits homologous pairing defects, leading to sterility. Analyses revealed that DSB formation and the number of RADIATION SENSITIVE51 (RAD51) foci are largely reduced, and synapsis is completely abolished in dsy2 meiocytes. Super-resolution structured illumination microscopy showed that DSY2 is located on the AE and forms a distinct alternating pattern with the HORMA-domain protein ASYNAPTIC1 (ASY1). In the dsy2 mutant, localization of ASY1 is affected, and loading of the central element ZIPPER1 (ZYP1) is disrupted. Yeast two-hybrid and bimolecular fluorescence complementation experiments further demonstrated that ZYP1 interacts with DSY2 but does not interact with ASY1. Therefore, DSY2, an AE protein, not only mediates DSB formation but also bridges the AE and central element of SC during meiosis.
机译:在减数分裂过程中,同源染色体通过编程的DNA双链断裂(DSB)的修复配对并重组。 DSB是在染色质环的背景下形成的,染色质环固定在蛋白质轴向元素(AE)上。 AE随后充当组装突触复合物(SC)的框架,该突触复合物在同源染色体之间提供了短暂但紧密的连接。在这里,我们显示了螺旋线圈蛋白DESYNAPTIC2(DSY2)介导DSB的形成,并直接参与玉米(Zea mays)中SC的组装。 dsy2突变体表现出同源配对缺陷,导致不育。分析表明,DSB的形成和RADIATION SENSITIVE51(RAD51)病灶的数量大大减少,并且dsy2减数分裂细胞的突触完全消失。超分辨率结构照明显微镜显示,DSY2位于AE上,与HORMA域蛋白ASYNAPTIC1(ASY1)形成明显的交替模式。在dsy2突变体中,ASY1的定位受到影响,并且中心元素ZIPPER1(ZYP1)的加载被破坏。酵母双杂交和双分子荧光互补实验进一步证明ZYP1与DSY2相互作用,但不与ASY1相互作用。因此,AE蛋白DSY2不仅介导DSB的形成,而且在减数分裂过程中桥接了AE和SC的中心元件。

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