bioRxiv · 10.1101/2021.09.10.459761
Protein-lipid interaction at low pH induces oligomerisation of the MakA cytotoxin from Vibrio cholerae
Abstract
Many pathogenic bacteria produce protein toxins that target and perturb host cell membranes. The secreted -pore-forming toxins (-PFTs) cause membrane damage via pore formation. This study demonstrates a remarkable, hitherto unknown mechanism by an -PFT protein from Vibrio cholerae. As part of the MakA/B/E tripartite toxin, MakA is involved in membrane pore formation similar to other -PFTs. In contrast, MakA protein alone induces tube-like structures in the acidic lysosomal host cell compartment. In vitro studies unravel the dynamics of tubular growth, which occur in a pH-, lipid- and concentration-dependent manner. A 3.7-[A] cryo-electron microscopy structure of MakA filaments reveals a unique protein-lipid superstructure. In its active -PFT conformation, MakA embeds its transmembrane helices into a thin annular lipid bilayer and spirals around a central cavity. Our study provides molecular insights into a novel tubulation mechanism of an -PFT protein, revealing a new mode of action by a secreted bacterial toxin.
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Nadeem, A., Berg, A., Pace, H., Alam, A., Toh, E., Aden, J., Zlatkov, N., Myint, S. L., Persson, K., Gröbner, G., Sjöstedt, A., Bally, M., Barandun, J., Uhlin, B. E., Wai, S. N.. 2021-09-12. Protein-lipid interaction at low pH induces oligomerisation of the MakA cytotoxin from Vibrio cholerae. https://doi.org/10.1101/2021.09.10.459761
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