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首页> 外文期刊>Nucleic acids research >The interplay of primer-template DNA phosphorylation status and single-stranded DNA binding proteins in directing clamp loaders to the appropriate polarity of DNA
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The interplay of primer-template DNA phosphorylation status and single-stranded DNA binding proteins in directing clamp loaders to the appropriate polarity of DNA

机译:引物-模板DNA磷酸化状态和单链DNA结合蛋白之间的相互作用,将钳位加载子引导至合适的DNA极性

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Sliding clamps are loaded onto DNA by clamp loaders to serve the critical role of coordinating various enzymes on DNA. Clamp loaders must quickly and efficiently load clamps at primer/template (p/t) junctions containing a duplex region with a free 3′OH (3′DNA), but it is unclear how clamp loaders target these sites. To measure the Escherichia coli and Saccharomyces cerevisiae clamp loader specificity toward 3′DNA, fluorescent β and PCNA clamps were used to measure clamp closing triggered by DNA substrates of differing polarity, testing the role of both the 5′phosphate (5′P) and the presence of single-stranded binding proteins (SSBs). SSBs inhibit clamp loading by both clamp loaders on the incorrect polarity of DNA (5′DNA). The 5′P groups contribute selectivity to differing degrees for the two clamp loaders, suggesting variations in the mechanism by which clamp loaders target 3′DNA. Interestingly, the χ subunit of the E. coli clamp loader is not required for SSB to inhibit clamp loading on phosphorylated 5′DNA, showing that χ·SSB interactions are dispensable. These studies highlight a common role for SSBs in directing clamp loaders to 3′DNA, as well as uncover nuances in the mechanisms by which SSBs perform this vital role.
机译:滑动夹具通过夹具加载器加载到DNA上,起着协调DNA上各种酶的关键作用。夹具加载器必须快速有效地将夹具加载到包含带有自由3'OH(3'DNA)的双链体区域的引物/模板(p / t)连接处,但是目前尚不清楚夹具加载器如何靶向这些位点。为了测量大肠埃希氏菌和酿酒酵母对3'DNA的特异性,使用荧光β和PCNA钳来测量由极性不同的DNA底物触发的钳闭合,测试5'磷酸(5'P)和5'P单链结合蛋白(SSB)的存在。 SSB抑制两个钳夹加载器在不正确的DNA(5'DNA)极性上的钳夹加载。 5'P基团对两种钳装载器贡献了不同程度的选择性,表明钳装载器靶向3'DNA的机理有所不同。有趣的是,SSB不需要E. coli Clamp loader的χ亚基来抑制磷酸化5'DNA上的Clamp加载,表明χ·SSB相互作用是可有可无的。这些研究突显了SSB在将钳形装载子引导至3'DNA方面的共同作用,并揭示了SSB发挥重要作用的机制中的细微差别。

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