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corona Is Required for Higher-Order Assembly of Transverse Filaments into Full-Length Synaptonemal Complex in Drosophila Oocytes

机译:果蝇卵母细胞中横丝成高阶突触复合体的高阶组装所必需的电晕

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The synaptonemal complex (SC) is an intricate structure that forms between homologous chromosomes early during the meiotic prophase, where it mediates homolog pairing interactions and promotes the formation of genetic exchanges. In Drosophila melanogaster, C(3)G protein forms the transverse filaments (TFs) of the SC. The N termini of C(3)G homodimers localize to the Central Element (CE) of the SC, while the C-termini of C(3)G connect the TFs to the chromosomes via associations with the axial elements/lateral elements (AEs/LEs) of the SC. Here, we show that the Drosophila protein Corona (CONA) co-localizes with C(3)G in a mutually dependent fashion and is required for the polymerization of C(3)G into mature thread-like structures, in the context both of paired homologous chromosomes and of C(3)G polycomplexes that lack AEs/LEs. Although AEs assemble in cona oocytes, they exhibit defects that are characteristic of c(3)G mutant oocytes, including failure of AE alignment and synapsis. These results demonstrate that CONA, which does not contain a coiled coil domain, is required for the stable ‘zippering’ of TFs to form the central region of the Drosophila SC. We speculate that CONA's role in SC formation may be similar to that of the mammalian CE proteins SYCE2 and TEX12. However, the observation that AE alignment and pairing occurs in Tex12 and Syce2 mutant meiocytes but not in cona oocytes suggests that the SC plays a more critical role in the stable association of homologs in Drosophila than it does in mammalian cells.
机译:突触复合物(SC)是在减数分裂前期早期在同源染色体之间形成的复杂结构,在其中它介导同源配对相互作用并促进基因交换的形成。在果蝇中,C(3)G蛋白形成SC的横丝(TF)。 C(3)G同型二聚体的N末端位于SC的中央元件(CE),而C(3)G的C末端通过与轴向元件/侧向元件(AE)的关联将TF连接到染色体/ LEs)。在这里,我们显示果蝇蛋白电晕(CONA)与C(3)G以相互依赖的方式共定位,并且是C(3)G聚合成成熟的线状结构所必需的,在两种情况下配对的同源染色体和缺少AE / LE的C(3)G多复合体。尽管AEs在锥状卵母细胞中组装,但它们显示出c(3)G突变型卵母细胞特有的缺陷,包括AE排列失败和突触失败。这些结果表明,不包含卷曲螺旋域的CONA是稳定形成TF的“拉链”以形成果蝇SC中心区域所必需的。我们推测CONA在SC形成中的作用可能与哺乳动物CE蛋白SYCE2和TEX12相似。但是,观察到AE对齐和配对发生在Tex12和Syce2突变型减数分裂细胞中,而不是在锥卵母细胞中,这表明果蝇与果蝇相比,果蝇在果蝇同源物的稳定缔合中起着更为关键的作用。

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