Vincent Antony T, Nyongesa Sammy, Morneau Isabelle, Reed Michael B, Tocheva Elitza I, Veyrier Frederic J
INRS-Institut Armand-Frappier, Bacterial Symbionts Evolution, Laval, QC, Canada.
McGill International TB Centre, Montreal, QC, Canada.
Front Microbiol. 2018 Oct 9;9:2341. doi: 10.3389/fmicb.2018.02341. eCollection 2018.
Mycobacteria are well known for their taxonomic diversity, their impact on global health, and for their atypical cell wall and envelope. In addition to a cytoplasmic membrane and a peptidoglycan layer, the cell envelope of members of the order , which include , also have an arabinogalactan layer connecting the peptidoglycan to an outer membrane, the so-called "mycomembrane." This unusual cell envelope composition of mycobacteria is of prime importance for several physiological processes such as protection from external stresses and for virulence. Although there have been recent breakthroughs in the elucidation of the composition and organization of this cell envelope, its evolutionary origin remains a mystery. In this perspectives article, the characteristics of the cell envelope of mycobacteria with respect to other actinobacteria will be dissected through a molecular evolution framework in order to provide a panoramic view of the evolutionary pathways that appear to be at the origin of this unique cell envelope. In combination with a robust molecular phylogeny, we have assembled a gene matrix based on the presence or absence of key determinants of cell envelope biogenesis in the phylum. We present several evolutionary scenarios regarding the origin of the mycomembrane. In light of the data presented here, we also propose a novel alternative hypothesis whereby the stepwise acquisition of core enzymatic functions may have allowed the sequential remodeling of the external cell membrane during the evolution of and has led to the unique mycomembrane of slow-growing mycobacteria as we know it today.
分枝杆菌以其分类学多样性、对全球健康的影响以及非典型的细胞壁和包膜而闻名。除了细胞质膜和肽聚糖层外,包括结核分枝杆菌在内的分枝杆菌目成员的细胞包膜还有一层阿拉伯半乳聚糖层,将肽聚糖连接到外膜,即所谓的“霉菌膜”。分枝杆菌这种不同寻常的细胞包膜组成对于多种生理过程至关重要,例如抵御外部压力和致病力。尽管最近在阐明这种细胞包膜的组成和结构方面取得了突破,但其进化起源仍然是个谜。在这篇观点文章中,将通过分子进化框架剖析分枝杆菌与其他放线菌相比的细胞包膜特征,以便全景展现似乎是这种独特细胞包膜起源的进化途径。结合可靠的分子系统发育,我们基于放线菌门中细胞包膜生物合成关键决定因素的有无组装了一个基因矩阵。我们提出了几种关于霉菌膜起源的进化假说。根据此处提供的数据,我们还提出了一种新的替代假说,即核心酶功能的逐步获得可能在放线菌进化过程中允许对外部细胞膜进行顺序重塑,并导致了我们如今所知的生长缓慢的分枝杆菌独特的霉菌膜。