4.1 Review

Biochemical and biophysical investigation of the HalM2 lanthipeptide synthetase using mass spectrometry

Journal

CANADIAN JOURNAL OF CHEMISTRY
Volume 100, Issue 3, Pages 182-196

Publisher

CANADIAN SCIENCE PUBLISHING
DOI: 10.1139/cjc-2021-0124

Keywords

lanthipeptides; biosynthesis; natural products; mass spectrometry; mechanistic enzymology

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The emergence of antimicrobial resistance in clinical settings has led to an increased need for the discovery and development of new antimicrobial compounds. Lanthipeptides, genetically encoded molecular scaffolds, show promise as a platform for engineering biologically active peptides. Over the past several years, mass spectrometry-based techniques have been developed to investigate the complex reaction sequences and molecular interactions involved in lanthipeptide biosynthesis.
The rapid emergence of antimicrobial resistance in clinical settings has called for renewed efforts to discover and develop new antimicrobial compounds. Lanthipeptides present a promising, genetically encoded molecular scaffold for the engineering of structurally complex, biologically active peptides. These peptide natural products are constructed by enzymes (lanthipeptide synthetases) with relaxed substrate specificity that iteratively modify the precursor lanthipeptide to generate structures with defined sets of thioether macrocycles. The mechanistic features that guide the maturation of lanthipeptides into their proper, fully modified forms are obscured by the complexity of the multistep maturation and the large size and dynamic structures of the synthetases and precursor peptides. Over the past several years, our lab has been developing a suite of mass spectrometry-based techniques that are ideally suited to untangling the complex reaction sequences and molecular interactions that define lanthipeptide biosynthesis. This review focuses on our development and application of these mass spectrometry-based techniques to investigate the biochemical, kinetic, and biophysical properties of the haloduracin b class II lanthipeptide synthetase, HalM2.

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