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Author Spotlight: Understanding Microbe Adaptation Using Innovative Techniques for Exploring Thermophilic Evolution
Published on: June 14, 2024
The Mycobacterial Cell Envelope: A Relict From the Past or the Result of Recent Evolution?
Antony T Vincent1,2, Sammy Nyongesa1, Isabelle Morneau3
1INRS-Institut Armand-Frappier, Bacterial Symbionts Evolution, Laval, QC, Canada.
Abstract:
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 Corynebacteriales, which include Mycobacterium tuberculosis, 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 Actinobacteria 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 Actinobacteria and has led to the unique mycomembrane of slow-growing mycobacteria as we know it today.
Insights
The unique mycobacterial cell envelope evolved through stepwise acquisition of genes, leading to the protective mycomembrane. This study explores the evolutionary pathways behind this complex structure in Actinobacteria.
Area of Science:
- Microbiology
- Evolutionary Biology
- Biochemistry
Background:
- Mycobacteria possess a unique cell envelope, including a mycomembrane, crucial for survival and virulence.
- The evolutionary origin of this complex cell envelope remains largely unknown.
- Understanding the mycomembrane's evolution is key to addressing global health challenges posed by mycobacteria.
Purpose of the Study:
- To investigate the evolutionary pathways leading to the unique mycobacterial cell envelope.
- To propose a novel hypothesis for the origin of the mycomembrane.
- To provide a panoramic view of cell envelope evolution in Actinobacteria.
Main Methods:
- Utilized a molecular evolution framework.
- Constructed a gene matrix based on cell envelope biogenesis determinants in Actinobacteria.
- Performed robust molecular phylogeny analysis.
Main Results:
- Presented several evolutionary scenarios for mycomembrane origin.
- Identified key determinants in Actinobacteria cell envelope biogenesis.
- Assembled a comprehensive gene matrix.
Conclusions:
- Proposed a novel hypothesis for stepwise genetic acquisition driving mycomembrane evolution.
- The sequential remodeling of the cell membrane during Actinobacteria evolution led to the modern mycomembrane.
- This evolutionary perspective offers insights into mycobacterial physiology and potential therapeutic targets.
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