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Identification of Holliday junction resolvases from humans and yeast

机译:鉴定人和酵母中的霍利迪交界区

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Four-way DNA intermediates, also known as Holliday junctions, are formed during homologous recombination and DNA repair, and their resolution is necessary for proper chromosome segregation. Here we identify nucleases from Saccharomyces cerevisiae and human cells that promote Holliday junction resolution, in a manner analogous to that shown by the Escherichia coli Holliday junction resolvase RuvC. The human Holliday junction resolvase, GEN1, and its yeast orthologue, Yen1, were independently identified using two distinct experimental approaches: GEN1 was identified by mass spectrometry following extensive fractionation of HeLa cell-free extracts, whereas Yen1 was detected by screening a yeast gene fusion library for nucleases capable of Holliday junction resolution. The eukaryotic Holliday junction resolvases represent a new subclass of the Rad2/XPG family of nucleases. Recombinant GEN1 and Yen1 resolve Holliday junctions by the introduction of symmetrically related cuts across the junction point, to produce nicked duplex products in which the nicks can be readily ligated.
机译:在同源重组和DNA修复过程中会形成四向DNA中间体,也称为霍利迪(Holliday)连接,它们的分离对于正确的染色体分离是必需的。在这里,我们从酿酒酵母和人类细胞中鉴定出核酸酶,这些核酸酶以类似于大肠杆菌霍利迪结溶解酶RuvC所示的方式促进霍利迪结的分辨。使用两种不同的实验方法独立鉴定了人类霍利迪交界处分离酶GEN1及其酵母直向同源物Yen1:在大量分离HeLa无细胞提取物后,通过质谱法鉴定了GEN1,而通过筛选酵母基因融合物检测了Yen1能够进行霍利迪连接解析的核酸酶文库。真核霍利迪连接分辨代表了Rad2 / XPG核酸酶家族的一个新的亚类。重组GEN1和Yen1通过在连接点上引入对称相关的切口来解析霍利迪连接,从而产生带切口的双链产物,其中可以容易地连接切口。

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