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细菌中赖氨酸核糖开关分布的比较基因组学和系统发育基因组学分析

Comparative genomics and phylogenomic analyses of lysine riboswitch distributions in bacteria.

作者信息

Mukherjee Sumit, Barash Danny, Sengupta Supratim

机构信息

Department of Physical Sciences, Indian Institute of Science Education and Research Kolkata, Mohanpur, India.

Department of Computer Science, Ben-Gurion University of the Negev, Beer-Sheva, Israel.

出版信息

PLoS One. 2017 Sep 5;12(9):e0184314. doi: 10.1371/journal.pone.0184314. eCollection 2017.

Abstract

Riboswitches are cis-regulatory elements that regulate the expression of genes involved in biosynthesis or transport of a ligand that binds to them. Among the nearly 40 classes of riboswitches discovered so far, three are known to regulate the concentration of biologically encoded amino acids glycine, lysine, and glutamine. While some comparative genomics studies of riboswitches focusing on their gross distribution across different bacterial taxa have been carried out recently, systematic functional annotation and analysis of lysine riboswitches and the genes they regulate are still lacking. We analyzed 2785 complete bacterial genome sequences to systematically identify 468 lysine riboswitches (not counting hits from multiple strains of the same species) and obtain a detailed phylogenomic map of gene-specific lysine riboswitch distribution across diverse prokaryotic phyla. We find that lysine riboswitches are most abundant in Firmicutes and Gammaproteobacteria where they are found upstream to both biosynthesis and/or transporter genes. They are relatively rare in all other prokaryotic phyla where if present they are primarily found upstream to operons containing many lysine biosynthesis genes. The genome-wide study of the genetic organisation of the lysine riboswitches show considerable variation both within and across different Firmicute orders. Correlating the location of a riboswitch with its genomic context and its phylogenetic relationship with other evolutionarily related riboswitch carrying species, enables identification and annotation of many lysine biosynthesis, transporter and catabolic genes. It also reveals previously unknown patterns of lysine riboswitch distribution and gene/operon regulation and allows us to draw inferences about the possible point of origin of lysine riboswitches. Additionally, evidence of horizontal transfer of riboswitches was found between Firmicutes and Actinobacteria. Our analysis provides a useful resource that will lead to a better understanding of the evolution of these regulatory elements and prove to be beneficial for exploiting riboswitches for developing targeted therapies.

摘要

核糖开关是一种顺式调控元件,可调节与结合自身的配体生物合成或转运相关基因的表达。在目前已发现的近40类核糖开关中,已知有三类可调节生物编码的氨基酸——甘氨酸、赖氨酸和谷氨酰胺的浓度。虽然最近开展了一些针对核糖开关的比较基因组学研究,重点关注它们在不同细菌类群中的总体分布,但赖氨酸核糖开关及其调控基因的系统功能注释和分析仍然欠缺。我们分析了2785个完整的细菌基因组序列,以系统地鉴定出468个赖氨酸核糖开关(不包括同一物种多个菌株的重复命中结果),并获得了基因特异性赖氨酸核糖开关在不同原核生物门中分布的详细系统发育基因组图谱。我们发现,赖氨酸核糖开关在厚壁菌门和γ-变形菌门中最为丰富,它们位于生物合成和/或转运蛋白基因的上游。在所有其他原核生物门中,它们相对较少,若有存在,主要位于含有许多赖氨酸生物合成基因的操纵子上游。对赖氨酸核糖开关遗传组织的全基因组研究表明,在不同的厚壁菌目内和目之间都存在相当大的差异。将核糖开关的位置与其基因组背景及其与其他携带进化相关核糖开关物种的系统发育关系相关联,能够识别和注释许多赖氨酸生物合成、转运和分解代谢基因。这也揭示了赖氨酸核糖开关分布以及基因/操纵子调控中以前未知的模式,并使我们能够推断赖氨酸核糖开关可能的起源点。此外,还发现了厚壁菌门和放线菌门之间核糖开关水平转移的证据。我们的分析提供了一个有用的资源,将有助于更好地理解这些调控元件的进化,并证明有助于利用核糖开关开发靶向治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9e9/5584792/c097d553acca/pone.0184314.g001.jpg

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