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Unread 08-29-2017, 05:35 PM
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Default Recent progress on the application of (2)H solid-state NMR to probe the interaction of antimicrobial peptides with intact bacteria.

Recent progress on the application of (2)H solid-state NMR to probe the interaction of antimicrobial peptides with intact bacteria.

Related Articles Recent progress on the application of (2)H solid-state NMR to probe the interaction of antimicrobial peptides with intact bacteria.

Biochim Biophys Acta. 2017 Aug 24;:

Authors: Booth V, Warschawski DE, Santisteban NP, Laadhari M, Marcotte I

Abstract
Discoveries relating to innate immunity and antimicrobial peptides (AMPs) granted Bruce Beutler and Jules Hoffmann a Nobel prize in medicine in 2011, and opened up new avenues for the development of therapies against infections, and even cancers. The mechanisms by which AMPs interact with, and ultimately disrupt, bacterial cell membranes is still, to a large extent, incompletely understood. Up until recently, this mechanism was studied using model lipid membranes that failed to reproduce the complexity of molecular interactions present in real cells comprising lipids but also membrane proteins, a cell wall containing peptidoglycan or lipopolysaccharides, and other molecules. In this review, we focus on recent attempts to study, at the molecular level, the interaction between cationic AMPs and intact bacteria, by (2)H solid-state NMR. Specifically-labeled lipids allow us to focus on the interaction of AMPs with the heart of the bacterial membrane, and measure the lipid order and its variation upon interaction with various peptides. We will review the important parameters to consider in such a study, and summarize the results obtained in the past 5years on various peptides, in particular aurein 1.2, caerin 1.1, MSI-78 and CA(1-8)M(1-10).


PMID: 28844739 [PubMed - as supplied by publisher]



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