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通过内在过氧化物酶活性实现DNA G-四链体的自生物素化

Self-biotinylation of DNA G-quadruplexes via intrinsic peroxidase activity.

作者信息

Einarson Owen J, Sen Dipankar

机构信息

Department of Chemistry, Simon Fraser University, Burnaby, British Columbia V5A 1S6, Canada.

Department of Molecular Biology & Biochemistry, Simon Fraser University, Burnaby, British Columbia V5A 1S6, Canada.

出版信息

Nucleic Acids Res. 2017 Sep 29;45(17):9813-9822. doi: 10.1093/nar/gkx765.

Abstract

The striking and ubiquitous in vitro affinity between hemin and DNA/RNA G-quadruplexes raises the intriguing possibility of its relevance to biology. To date, no satisfactory experimental framework has been reported for investigating such a possibility. Complexation by G-quadruplexes leads to activation of the bound hemin toward catalysis of 1- and 2-electron oxidative reactions, with phenolic compounds being particularly outstanding substrates. We report here a strategy for exploiting that intrinsic peroxidase activity of hemin•G-quadruplex complexes for self-biotinylation of their G-quadruplex component. Such self-biotinylation occurs with good efficiency and high discrimination in vitro, being specific for G-quadruplexes and not for duplexes. The biotinylated DNA, moreover, remains amenable to polymerase chain reaction amplification, rendering it suitable for analysis by ChIP-Seq and related methods. We anticipate that this self-biotinylation methodology will also serve as a sensitive tool, orthogonal to existing ones, for identifying, labeling and pulling down cellular RNA and DNA G-quadruplexes in general, as well as proteins bound to or proximal to such quadruplexes.

摘要

血红素与DNA/RNA G-四链体之间显著且普遍存在的体外亲和力引发了其与生物学相关性的有趣可能性。迄今为止,尚未有用于研究这种可能性的令人满意的实验框架被报道。G-四链体的络合作用会导致结合的血红素对1-和2-电子氧化反应的催化活性增强,酚类化合物是特别出色的底物。我们在此报告一种利用血红素•G-四链体复合物的固有过氧化物酶活性对其G-四链体组分进行自生物素化的策略。这种自生物素化在体外具有良好的效率和高特异性,对G-四链体具有特异性,而对双链体则不然。此外,生物素化的DNA仍可用于聚合酶链反应扩增,使其适用于ChIP-Seq及相关方法的分析。我们预计,这种自生物素化方法还将作为一种与现有方法互补的灵敏工具,用于识别、标记和下拉细胞中的RNA和DNA G-四链体,以及与此类四链体结合或靠近的蛋白质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1c7/5737693/e80c928686f3/gkx765fig1.jpg

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