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Lactoferricins access the cytosol of Escherichia coli within few seconds

Semeraro, E. F.; Marx, L.; Mandl, J.; Letofsky-Papst, I.; Mayrhofer, C.; Frewein, M. P. K.; Scott, H. L.; Prevost, S.; Bergler, H.; Lohner, K.; Pabst, G.

2021-09-26 biophysics
10.1101/2021.09.24.461681 bioRxiv
Show abstract

We report the real-time response of E. coli to lactoferricin-derived antimicrobial peptides (AMPs) on length-scales bridging microscopic cell-sizes to nanoscopic lipid packing using millisecond time-resolved synchrotron small-angle X-ray scattering. Coupling a multi-scale scattering data analysis to biophysical assays for peptide partitioning revealed that the AMPs rapidly saturate the bacterial envelope and reach the cytosol within less than three seconds--much faster than previously considered. Final cytosolic AMP concentrations of ~ 100 mM suggest an efficient shut-down of metabolism as primary cause for bacterial killing. On the other hand, the damage of the cell envelope is a collateral effect of AMP activity that does not kill the bacteria. This implies that the impairment of the membrane barrier is a necessary but not sufficient condition for microbial killing by lactoferricins. The most efficient AMP studied exceeds others in both speed of reaching cytoplasm and lowest cytosolic peptide concentration.

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