首页> 外文期刊>Biophysical Journal >Probing the Potential Role of Non-B DNA Structures at Yeast Meiosis-Specific DNA Double-Strand Breaks
【24h】

Probing the Potential Role of Non-B DNA Structures at Yeast Meiosis-Specific DNA Double-Strand Breaks

机译:探讨非B DNA结构在酵母大学特异性DNA双链断裂中的潜在作用

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

A plethora of evidence suggests that different types of DNA quadruplexes are widely present in the genome of all organisms. The existence of a growing number of proteins that selectively bind and/or process these structures underscores their biological relevance. Moreover, G-quadruplex DNA has been implicated in the alignment of four sister chromatids by forming parallel guanine quadruplexes during meiosis; however, the underlying mechanism is not well defined. Here we show that a G/C-rich motif associated with a meiosis-specific DNA double-strand break (DSB) in Saccharomyces cerevisiae folds into G-quadruplex, and the C-rich sequence complementary to the G-rich sequence forms an i-motif. The presence of G-quadruplex or i-motif structures upstream of the green fluorescent protein-coding sequence markedly reduces the levels of gfp mRNA expression in S. cerevisiae cells, with a concomitant decrease in green fluorescent protein abundance, and blocks primer extension by DNA polymerase, thereby demonstrating the functional significance of these structures. Surprisingly, although S. cerevisiae Hop1, a component of synaptonemal complex axial/lateral elements, exhibits strong affinity to G-quadruplex DNA, it displays a much weaker affinity for the i-motif structure. However, the Hop1 C-terminal but not the N-terminal domain possesses strong i-motif binding activity, implying that the C-terminal domain has a distinct substrate specificity. Additionally, we found that Hop1 promotes intermolecular pairing between G/C-rich DNA segments associated with a meiosis-specific DSB site. Our results support the idea that the G/C-rich motifs associated with meiosis-specific DSBs fold into intramolecular G-quadruplex and i-motif structures, both in vitro and in vivo, thus revealing an important link between non-B form DNA structures and Hop1 in meiotic chromosome synapsis and recombination.
机译:一种血红蛋的证据表明,不同类型的DNA Quadrupleces广泛存在于所有生物的基因组中。存在越来越多的蛋白质,其选择性地结合和/或过程这些结构下调了它们的生物相关性。此外,G-Quadrepled DNA通过在减数分裂期间形成平行的鸟嘌呤四边形来涉及四个姐妹染色体的对准;但是,潜在机制没有明确定义。在这里,我们表明,与酿酒酵母酿酒酵母的富含大学特异性DNA双链断裂(DSB)折叠成G-Quadreplex的G / C的基序,并且与富含G的序列互补的C富序列形成I. -主题。在绿色荧光蛋白编码序列上游的G-Quadreplex或I-MOTIF结构的存在显着降低了酿酒酵母细胞中GFP mRNA表达的水平,随着绿色荧光蛋白丰度的伴随地减少,并阻止了DNA的引物延伸聚合酶,从而证明了这些结构的功能意义。令人惊讶的是,虽然S. Cerevisiae Hop1,Symaponemal复合轴轴/侧面元素的组分对G-Quadrepled DNA表现出强烈的亲和力,但它显示了对I-MOTIF结构的更弱的亲和力。然而,HOP1 C末端但不是N-末端结构域具有强I-MOTIF结合活性,这意味着C末端结构域具有不同的底物特异性。此外,我们发现HOP1促进与富含大学特异性DSB位点相关的G / C的DNA段之间的分子间配对。我们的研究结果支持了与Meiosis特异性DSBS相关的G / C的基序在体外和体内折叠到分子内G-Quadreplex和I-MOTIF结构中,从而揭示非B形式DNA结构之间的重要联系在减少人性染色体突触和重组中的HOP1。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号