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The Odd RB Phage—Identification of Arabinosylation as a New Epigenetic Modification of DNA in T4-Like Phage RB69

机译:奇异的 RB噬菌体—识别阿拉伯糖基化作为T4噬菌体RB69中DNA的新表观遗传修饰

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摘要

In bacteriophages related to T4, hydroxymethylcytosine (hmC) is incorporated into the genomic DNA during DNA replication and is then further modified to glucosyl-hmC by phage-encoded glucosyltransferases. Previous studies have shown that RB69 shares a core set of genes with T4 and relatives. However, unlike the other “RB” phages, RB69 is unable to recombine its DNA with T4 or with the other “RB” isolates. In addition, despite having homologs to the T4 enzymes used to synthesize hmC, RB69 has no identified homolog to known glucosyltransferase genes. In this study we sought to understand the basis for RB69’s behavior using high-pH anion exchange chromatography (HPAEC) and mass spectrometry. Our analyses identified a novel phage epigenetic DNA sugar modification in RB69 DNA, which we have designated arabinosyl-hmC (ara-hmC). We sought a putative glucosyltranserase responsible for this novel modification and determined that RB69 also has a novel transferase gene, ORF003c, that is likely responsible for the arabinosyl-specific modification. We propose that ara-hmC was responsible for RB69 being unable to participate in genetic exchange with other hmC-containing T-even phages, and for its described incipient speciation. The RB69 ara-hmC also likely protects its DNA from some anti-phage type-IV restriction endonucleases. Several T4-related phages, such as E. coli phage JS09 and Shigella phage Shf125875 have homologs to RB69 ORF003c, suggesting the ara-hmC modification may be relatively common in T4-related phages, highlighting the importance of further work to understand the role of this modification and the biochemical pathway responsible for its production.
机译:在与T4相关的噬菌体中,羟甲基胞嘧啶(hmC)在DNA复制过程中被掺入基因组DNA中,然后通过噬菌体编码的葡糖基转移酶进一步修饰为葡糖基hmC。先前的研究表明,RB69与T4和亲戚共享一组核心基因。但是,与其他“ RB”噬菌体不同,RB69无法将其DNA与T4或其他“ RB”分离株重组。另外,尽管与用于合成hmC的T4酶具有同源性,但RB69与已知的葡糖基转移酶基因没有鉴定出同源性。在这项研究中,我们试图了解使用高pH阴离子交换色谱(HPAEC)和质谱法分析RB69行为的基础。我们的分析确定了RB69 DNA中一种新的噬菌体表观遗传DNA糖修饰,我们将其指定为阿拉伯糖基hmC(ara-hmC)。我们寻找一个负责这种新颖修饰的假定的葡糖基转移酶,并确定RB69还具有一个新颖的转移酶基因ORF003c,该基因可能是阿拉伯糖基特异性修饰的原因。我们建议ara-hmC负责RB69无法参与与其他hmC含T-even噬菌体的遗传交换,以及其描述的初期物种形成。 RB69 ara-hmC还可能保护其DNA免受某些抗噬菌体IV型限制性核酸内切酶的侵害。几种T4相关的噬菌体,例如大肠杆菌噬菌体JS09和志贺氏菌噬菌体Shf125875与RB69 ORF003c具有同源性,这表明ara-hmC修饰在T4相关的噬菌体中相对常见,强调了进一步研究以了解A4噬菌体的作用的重要性。这种修饰和负责其产生的生化途径。

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