Aberrant Membrane Structures in Hypervesiculating Escherichia coli Strain ΔmlaE ΔnlpI Visualized by Electron

Yoshihiro Ojima1, Tomomi Sawabe1, Mao Nakagawa1

  • 1Department of Applied Chemistry and Bioengineering, Graduate School of Engineering, Osaka City University, Osaka, Japan.

Insights

Mutations in Escherichia coli trigger plasmolysis and enhance outer membrane vesicle (OMV) production. This study reveals novel mechanisms of OMV formation and increased cytosolic component secretion in engineered E. coli.

Area of Science:

  • Microbiology
  • Cell Biology
  • Molecular Biology

Background:

  • Escherichia coli generates outer membrane vesicles (OMVs) from its outer membrane.
  • Previous work showed combined deletion of nlpI and mlaE synergistically increases OMV production.
  • nlpI and mlaE are implicated in envelope structure and phospholipid distribution, respectively.

Purpose of the Study:

  • To investigate the mechanism of enhanced OMV production in E. coli lacking nlpI and mlaE.
  • To analyze the structural changes and vesicle content in the double mutant.
  • To understand the role of plasmolysis in OMV formation.

Main Methods:

  • Quick-freeze, deep-etch electron microscopy (QFDE-EM) for ultrastructural analysis.
  • Analysis of gene knockout mutants (ΔmlaE, ΔnlpI, and ΔmlaEΔnlpI).
  • Quantification of recombinant green fluorescent protein (GFP) secretion in OMVs.

Main Results:

  • Plasmolysis observed at cell tips in ΔmlaEΔnlpI, ΔnlpI, and ΔmlaE mutants, correlating with OMV formation.
  • Intracellular vesicles and multilamellar OMVs found in ΔmlaEΔnlpI cells.
  • Over 100-fold increase in cytosolic GFP secretion via OMVs in ΔmlaEΔnlpI compared to WT.
  • Larger holes in peptidoglycan layer of ΔmlaEΔnlpI cells, facilitating cytoplasmic membrane protrusion.

Conclusions:

  • Plasmolysis is induced in hypervesiculating E. coli mutants.
  • Cytoplasmic membrane material can be incorporated into outer-inner membrane vesicles (OIMVs) and secreted.
  • Defects in peptidoglycan structure contribute to OMV and OIMV formation in ΔmlaEΔnlpI cells.