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Directed Protein Packaging within Outer Membrane Vesicles from Escherichia coli: Design, Production and Purification
Published on: November 16, 2016
Identification of specific posttranslational O-mycoloylations mediating protein targeting to the mycomembrane
Clément Carel1, Julien Marcoux1, Valérie Réat1
1Institut de Pharmacologie et de Biologie Structurale, Université de Toulouse, CNRS, Université Paul Sabatier, 31000 Toulouse, France.
Abstract:
The outer membranes (OMs) of members of the Corynebacteriales bacterial order, also called mycomembranes, harbor mycolic acids and unusual outer membrane proteins (OMPs), including those with α-helical structure. The signals that allow precursors of such proteins to be targeted to the mycomembrane remain uncharacterized. We report here the molecular features responsible for OMP targeting to the mycomembrane of Corynebacterium glutamicum, a nonpathogenic member of the Corynebacteriales order. To better understand the mechanisms by which OMP precursors were sorted in C. glutamicum, we first investigated the partitioning of endogenous and recombinant PorA, PorH, PorB, and PorC between bacterial compartments and showed that they were both imported into the mycomembrane and secreted into the extracellular medium. A detailed investigation of cell extracts and purified proteins by top-down MS, NMR spectroscopy, and site-directed mutagenesis revealed specific and well-conserved posttranslational modifications (PTMs), including O-mycoloylation, pyroglutamylation, and N-formylation, for mycomembrane-associated and -secreted OMPs. PTM site sequence analysis from C. glutamicum OMP and other O-acylated proteins in bacteria and eukaryotes revealed specific patterns. Furthermore, we found that such modifications were essential for targeting to the mycomembrane and sufficient for OMP assembly into mycolic acid-containing lipid bilayers. Collectively, it seems that these PTMs have evolved in the Corynebacteriales order and beyond to guide membrane proteins toward a specific cell compartment.
Insights
Posttranslational modifications like O-mycoloylation guide outer membrane proteins (OMPs) to the mycomembrane in Corynebacteriales. These modifications are crucial for OMP targeting and assembly into lipid bilayers.
Area of Science:
- Microbiology
- Molecular Biology
- Bacterial Cell Envelope
Background:
- The outer membranes (OMs), or mycomembranes, of Corynebacteriales bacteria contain mycolic acids and unique outer membrane proteins (OMPs).
- Mechanisms for targeting OMP precursors to the mycomembrane are not well understood.
Purpose of the Study:
- To identify molecular features responsible for targeting outer membrane proteins (OMPs) to the mycomembrane in *Corynebacterium glutamicum*.
- To investigate the role of posttranslational modifications (PTMs) in OMP sorting and assembly.
Main Methods:
- Analysis of endogenous and recombinant OMPs (PorA, PorH, PorB, PorC) partitioning.
- Top-down mass spectrometry (MS) and Nuclear Magnetic Resonance (NMR) spectroscopy.
- Site-directed mutagenesis and sequence analysis of PTM sites.
Main Results:
- OMPs were found in both the mycomembrane and extracellular medium.
- Specific PTMs, including O-mycoloylation, pyroglutamylation, and N-formylation, were identified on mycomembrane-associated and secreted OMPs.
- These PTMs are essential for mycomembrane targeting and sufficient for OMP assembly into mycolic acid-containing bilayers.
Conclusions:
- Posttranslational modifications are critical for directing OMPs to the mycomembrane in *Corynebacterium glutamicum*.
- These PTMs appear to have evolved to guide membrane proteins to specific cellular compartments within the Corynebacteriales order and potentially beyond.
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