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Structure and mechanism for iterative amide N-methylation in the biosynthesis of channel-forming peptide cytotoxins.


ABSTRACT: SignificanceThe channel-forming proteusins are bacterial helical peptides that allow permeation of positively charged ions to influence membrane potential and cellular physiology. We biochemically characterize the effect of two critical posttranslational modifications on the secondary structure of the peptide substrate. We determine how a methyl group can be added to the side chains of D-Asn residues in a peptide substrate and show how flanking residues influence selectivity. These studies should foster the development of small-molecule peptide ion channels as therapeutics.

SUBMITTER: Cogan DP 

PROVIDER: S-EPMC9060474 | biostudies-literature | 2022 Mar

REPOSITORIES: biostudies-literature

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Structure and mechanism for iterative amide <i>N</i>-methylation in the biosynthesis of channel-forming peptide cytotoxins.

Cogan Dillon P DP   Bhushan Agneya A   Reyes Reyvin R   Zhu Lingyang L   Piel Jörn J   Nair Satish K SK  

Proceedings of the National Academy of Sciences of the United States of America 20220322 13


SignificanceThe channel-forming proteusins are bacterial helical peptides that allow permeation of positively charged ions to influence membrane potential and cellular physiology. We biochemically characterize the effect of two critical posttranslational modifications on the secondary structure of the peptide substrate. We determine how a methyl group can be added to the side chains of D-Asn residues in a peptide substrate and show how flanking residues influence selectivity. These studies shoul  ...[more]

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