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The architecture of Rad51 and Dmc1 in meiotic recombination complexes.

机译:减数分裂重组复合物中Rad51和Dmc1的体系结构。

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摘要

DNA double strand break (DSB) repair is essential to meiotic chromosome segregation. Rad51 and Dmc1 are DNA strand exchange proteins that cooperate in meiotic homologous recombination. Both proteins share very similar capabilities in vitro, but are functionally differentiated in vivo. Dmc1 is the catalytic recombinase; Rad51 plays a non-enzymatic accessory role, promoting Dmc1 assembly and directing recombination partner choice. The molecular architecture underlying this cooperation and functional differentiation is unknown. To better understand the mechanistic relationship between these meiotic recombinases, the structures of Rad51 and Dmc1 complexes were extensively characterized cytologically.;Rad51-Dmc1 co-foci commonly occur in pairs, separated by distances of up to 400 nm. Observations from spo11 hypomorphic tetraploids, spo11 mutants heterozygous for a VDE cut site, cytologically marked DSB hotpots, and spatial simulations suggest that a pair of Rad51-Dmc1 co-foci represent a single meiotic DSB. Co-focus pairing occurs at distances similar to that which separates sister chromatids but requires neither strand exchange nor synapsis. These results suggest that: 1. both Rad51 and Dmc1 co-occupy both ends of a meiotic DSB and 2. the two ends of a DSB are spatially separated.;Super-resolution direct stochastic optical reconstruction microscopy (dSTORM) reveals that Rad51 and Dmc1 filaments are extremely short and clustered in vivo. Meiotic Rad51 and Dmc1 super-resolution (sr) foci are little more than 100 nm long, corresponding to filaments a mere 40 protomers long or shorter. Additionally, multiple Rad51 and Dmc1 filaments likely occupy a single ssDNA tract. Careful controls demonstrated that these structural attributes are not artifacts of the imaging procedure and led to the correction of an artifact generated during super-resolution image reconstruction. These results suggest that multiple, short Rad51 and Dmc1 filaments co-occupy a single tract of ssDNA.;In an effort to observe DNA recombination complexes in living cells, Rad51, Dmc1, and Rad52 were fused to fluorescent proteins or tetracysteine tags. The functionality of these proteins was characterized in mitotic and meiotic cells. Comparison of different cytological preparations suggests that the majority of recombination complexes are too small to be observed above background fluorescence in live cells. These results call into question the "recombination factory" paradigm and provide tools for future live cell imaging studies.
机译:DNA双链断裂(DSB)修复对于减数分裂染色体分离至关重要。 Rad51和Dmc1是DNA链交换蛋白,在减数分裂同源重组中协同作用。两种蛋白质在体外共享非常相似的功能,但在体内功能上有所区别。 Dmc1是催化重组酶; Rad51发挥非酶辅助作用,促进Dmc1装配并指导重组伴侣的选择。这种合作和功能分化的分子结构尚不清楚。为了更好地了解这些减数分裂重组酶之间的机制关系,对Rad51和Dmc1复合物的结构进行了细胞学广泛表征。; Rad51-Dmc1共同点通常成对出现,相距最远400 nm。从spo11亚型四倍体,VDE切割位点杂合的spo11突变体,细胞学标记的DSB热点以及空间模拟的观察结果表明,一对Rad51-Dmc1共病灶代表一个减数分裂DSB。共聚焦配对发生在与分离姐妹染色单体相似的距离上,但既不需要链交换也不需要突触。这些结果表明:1. Rad51和Dmc1共同占据了减数分裂DSB的两个末端,并且2. DSB的两个末端在空间上是分开的。;超高分辨率直接随机光学重建显微镜(dSTORM)显示Rad51和Dmc1丝极短并且在体内成簇。减数分裂Rad51和Dmc1超分辨率(sr)焦点的长度略大于100 nm,对应于仅40个长子或短子的长丝。此外,多个Rad51和Dmc1细丝可能占据一个ssDNA区域。仔细的控制表明,这些结构属性不是成像过程的伪像,并导致对在超分辨率图像重建期间生成的伪像进行校正。这些结果表明,多条短的Rad51和Dmc1细丝共同占据一个ssDNA。为了观察活细胞中的DNA重组复合体,将Rad51,Dmc1和Rad52与荧光蛋白或四半胱氨酸标签融合。这些蛋白质的功能已在有丝分裂和减数分裂细胞中表征。不同细胞学制剂的比较表明,大多数重组复合物太小,无法在活细胞中超过背景荧光观察到。这些结果质疑“重组工厂”范式,并为将来的活细胞成像研究提供了工具。

著录项

  • 作者

    Brown, Michael Scott.;

  • 作者单位

    The University of Chicago.;

  • 授予单位 The University of Chicago.;
  • 学科 Molecular biology.;Genetics.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 166 p.
  • 总页数 166
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 宗教;
  • 关键词

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