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DNA 3'pp5'G 加帽对 DNA 3'端修复反应的影响。

Impact of DNA3'pp5'G capping on repair reactions at DNA 3' ends.

机构信息

Molecular Biology Program, Sloan-Kettering Institute, New York, NY 10065.

Molecular Biology Program, Sloan-Kettering Institute, New York, NY 10065

出版信息

Proc Natl Acad Sci U S A. 2014 Aug 5;111(31):11317-22. doi: 10.1073/pnas.1409203111. Epub 2014 Jul 21.

Abstract

Many biological scenarios generate "dirty" DNA 3'-PO4 ends that cannot be sealed by classic DNA ligases or extended by DNA polymerases. The noncanonical ligase RtcB can "cap" these ends via a unique chemical mechanism entailing transfer of GMP from a covalent RtcB-GMP intermediate to a DNA 3'-PO4 to form DNA3'pp5'G. Here, we show that capping protects DNA 3' ends from resection by Escherichia coli exonucleases I and III and from end-healing by T4 polynucleotide 3' phosphatase. By contrast, the cap is an effective primer for DNA synthesis. E. coli DNA polymerase I and Mycobacterium DinB1 extend the DNAppG primer to form an alkali-labile DNApp(rG)pDNA product. The addition of dNTP depends on pairing of the cap guanine with an opposing cytosine in the template strand. Aprataxin, an enzyme implicated in repair of A5'pp5'DNA ends formed during abortive ligation by classic ligases, is highly effective as a DNA 3' decapping enzyme, converting DNAppG to DNA3'p and GMP. We conclude that the biochemical impact of DNA capping is to prevent resection and healing of a 3'-PO4 end, while permitting DNA synthesis, at the price of embedding a ribonucleotide and a pyrophosphate linkage in the repaired strand. Aprataxin affords a means to counter the impact of DNA capping.

摘要

许多生物场景会产生无法被经典 DNA 连接酶封闭或被 DNA 聚合酶延伸的“脏”DNA 3'-PO4 末端。非典型连接酶 RtcB 可以通过一种独特的化学机制来“封盖”这些末端,该机制涉及将 GMP 从 RtcB-GMP 共价中间体转移到 DNA 3'-PO4 上,形成 DNA3'pp5'G。在这里,我们表明封盖可以保护 DNA 3' 末端免受大肠杆菌核酸外切酶 I 和 III 的切除以及 T4 多核苷酸 3' 磷酸酶的末端修复。相比之下,该封盖是 DNA 合成的有效引物。大肠杆菌 DNA 聚合酶 I 和 Mycobacterium DinB1 可以延伸 DNAppG 引物以形成碱不稳定的 DNApp(rG)pDNA 产物。dNTP 的添加取决于封盖的鸟嘌呤与模板链上互补的胞嘧啶配对。Aprataxin 是一种与经典连接酶形成的 A5'pp5'DNA 末端修复相关的酶,它作为一种有效的 DNA 3' 脱帽酶,将 DNAppG 转化为 DNA3'p 和 GMP,具有很高的效率。我们得出结论,DNA 封盖的生化影响是防止 3'-PO4 末端的切除和修复,同时允许 DNA 合成,但代价是在修复链中嵌入一个核糖核苷酸和一个焦磷酸键。Aprataxin 提供了一种对抗 DNA 封盖影响的方法。

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