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重新研究 pks15/1 的表达特征揭示了控制致病性分枝杆菌中酚基硫辛酸和酚基甘油酯产生的调控模式。

Revisiting the expression signature of pks15/1 unveils regulatory patterns controlling phenolphtiocerol and phenolglycolipid production in pathogenic mycobacteria.

机构信息

National Institute for Agrarian and Veterinary Research (INIAV, IP), Oeiras, Portugal.

Centre for Ecology, Evolution and Environmental Changes (cE3c), Faculdade de Ciências da Universidade de Lisboa, Lisboa, Portugal.

出版信息

PLoS One. 2020 May 7;15(5):e0229700. doi: 10.1371/journal.pone.0229700. eCollection 2020.

Abstract

One of the most important and exclusive characteristics of mycobacteria is their cell wall. Amongst its constituent components are two related families of glycosylated lipids, diphthioceranates and phthiocerol dimycocerosate (PDIM) and its variant phenolic glycolipids (PGL). PGL have been associated with cell wall impermeability, phagocytosis, defence against nitrosative and oxidative stress and, intriguingly, biofilm formation. In bacteria from the Mycobacterium tuberculosis complex (MTBC), the biosynthetic pathway of the phenolphthiocerol moiety of PGL depends upon the expression of several genes encoding type I polyketide synthases (PKS), namely ppsA-E and pks15/1 which constitute the PDIM + PGL locus, and that are highly conserved in PDIM/PGL-producing strains. Consensus has not been achieved regarding the genetic organization of pks15/1 locus and knowledge is lacking on its transcriptional signature. Here we explore publicly available datasets of transcriptome data (RNA-seq) from more than 100 MTBC experiments in 40 growth conditions to outline the transcriptional structure and signature of pks15/1, using a differential expression approach to infer the regulatory patterns involving these and related genes. We show that pks1 expression is highly correlated with fadD22, Rv2949c, lppX, fadD29 and, also, pks6 and pks12, with the first three putatively integrating into a polycistronic structure. We evidence dynamic transcriptional heterogeneity within the genes involved in phenolphtiocerol and phenolic glycolipid production, most exhibiting up-regulation upon acidic pH and antibiotic exposure and down-regulation under hypoxia, dormancy, and low/high iron concentration. We finally propose a model based on transcriptome data in which σD positively regulates pks1, pks15 and fadD22, while σB and σE factors exert negative regulation at an upper level.

摘要

分枝杆菌最重要和独特的特征之一是其细胞壁。在其组成成分中,有两类相关的糖基化脂类,二分枝菌酸二分枝菌醇(PDIM)及其变体酚基甘油二醚(PGL)。PGL 与细胞壁的不透性、吞噬作用、抵抗硝化和氧化应激以及有趣的生物膜形成有关。在结核分枝杆菌复合体(MTBC)中的细菌中,PGL 的酚基分枝菌酸部分的生物合成途径依赖于几个编码 I 型聚酮合酶(PKS)的基因的表达,即 ppsA-E 和 pks15/1,它们构成 PDIM+PGL 基因座,并且在 PDIM/PGL 产生菌株中高度保守。关于 pks15/1 基因座的遗传组织尚未达成共识,并且缺乏对其转录特征的了解。在这里,我们使用差异表达方法探索了来自 40 种生长条件下超过 100 个 MTBC 实验的转录组数据(RNA-seq)的公共数据集,以概述 pks15/1 的转录结构和特征,从而推断涉及这些和相关基因的调节模式。我们表明,pks1 的表达与 fadD22、Rv2949c、lppX、 fadD29 以及 pks6 和 pks12 高度相关,前三个基因可能整合到一个多顺反子结构中。我们证明了涉及酚基分枝菌酸和酚基甘油二醚产生的基因中存在动态转录异质性,大多数基因在酸性 pH 和抗生素暴露下上调,在低氧、休眠和低/高铁浓度下下调。最后,我们提出了一个基于转录组数据的模型,其中 σD 正向调节 pks1、pks15 和 fadD22,而 σB 和 σE 因子在上层进行负调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58ed/7205293/cce29d5aef58/pone.0229700.g001.jpg

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