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丛集 J 分枝杆菌噬菌体:衣壳和尾部基因中的内含子剪接。

Cluster J mycobacteriophages: intron splicing in capsid and tail genes.

机构信息

Department of Biological Sciences, University of Pittsburgh, Pittsburgh, Pennsylvania, United States of America .

出版信息

PLoS One. 2013 Jul 9;8(7):e69273. doi: 10.1371/journal.pone.0069273. Print 2013.

Abstract

Bacteriophages isolated on Mycobacterium smegmatis mc(2)155 represent many distinct genomes sharing little or no DNA sequence similarity. The genomes are architecturally mosaic and are replete with genes of unknown function. A new group of genomes sharing substantial nucleotide sequences constitute Cluster J. The six mycobacteriophages forming Cluster J are morphologically members of the Siphoviridae, but have unusually long genomes ranging from 106.3 to 117 kbp. Reconstruction of the capsid by cryo-electron microscopy of mycobacteriophage BAKA reveals an icosahedral structure with a triangulation number of 13. All six phages are temperate and homoimmune, and prophage establishment involves integration into a tRNA-Leu gene not previously identified as a mycobacterial attB site for phage integration. The Cluster J genomes provide two examples of intron splicing within the virion structural genes, one in a major capsid subunit gene, and one in a tail gene. These genomes also contain numerous free-standing HNH homing endonuclease, and comparative analysis reveals how these could contribute to genome mosaicism. The unusual Cluster J genomes provide new insights into phage genome architecture, gene function, capsid structure, gene mobility, intron splicing, and evolution.

摘要

从耻垢分枝杆菌 mc(2)155 上分离出的噬菌体代表了许多不同的基因组,它们之间的 DNA 序列相似性很小或没有。这些基因组在结构上是镶嵌的,充满了未知功能的基因。一组具有大量核苷酸序列的新基因组构成了 Cluster J。形成 Cluster J 的六个分枝杆菌噬菌体在形态上属于肌尾噬菌体科,但它们具有非常长的基因组,长度从 106.3 到 117 kbp 不等。用冷冻电子显微镜重建分枝杆菌噬菌体 BAKA 的衣壳,揭示了一个具有 13 个三角数的二十面体结构。所有六个噬菌体都是温和的和同免疫的,原噬菌体的建立涉及整合到一个 tRNA-Leu 基因中,该基因以前没有被确定为噬菌体整合的细菌 attB 位点。Cluster J 基因组提供了两个病毒结构基因内内含子剪接的例子,一个在主要衣壳亚基基因中,一个在尾部基因中。这些基因组还包含许多独立的 HNH 归巢内切酶,比较分析揭示了它们如何有助于基因组镶嵌。这些不寻常的 Cluster J 基因组为噬菌体基因组结构、基因功能、衣壳结构、基因移动性、内含子剪接和进化提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/272b/3706429/4197169d111a/pone.0069273.g001.jpg

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