Structure-activity relationships of hGlyrichin-derived antibacterial peptides
Sha Ji
Abstract
Sha Ji
Abstract
Objective: To study the relationship between changes of primary structure and antibacterial activity of hGlyrichin-derived antibacterial peptides.Methods: On the basis of functional peptide CM19 derived from hGlyrichin,five peptides were designed and synthesized by substitution,replacement,deletion and rearrangement according to the feature of antimicrobial peptide and known structure-activity relationship.The antibacterial activities of these peptides were detected using the methods bytube-testing and plating.Results: The first cysteine at the N-terminal of CM19 peptide was necessary for maintaining the antibacterial activity;rearrangement of amino acids abolished the activity;seven amino acids at C-terminal of CM19 had no antibacterial activity;randomly increasing positive charges by replacing amino acids with positively charged amino acids did not improve antibacterial activity.The peptide,CM12,had broad-spectrum antibacterial activity against both normal bacteria and drug resistant bacteria.Conclusion: Amino acids substitution,deletion and rearrangement have obvious influence on the antibacterial activities of hGlryichin-derived antimibacterial peptides.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Objective: To study the relationship between changes of primary structure and antibacterial activity of hGlyrichin-derived antibacterial peptides.Methods: On the basis of functional peptide CM19 derived from hGlyrichin,five peptides were designed and synthesized by substitution,replacement,deletion and rearrangement according to the feature of antimicrobial peptide and known structure-activity relationship.The antibacterial activities of these peptides were detected using the methods bytube-testing and plating.Results: The first cysteine at the N-terminal of CM19 peptide was necessary for maintaining the antibacterial activity;rearrangement of amino acids abolished the activity;seven amino acids at C-terminal of CM19 had no antibacterial activity;randomly increasing positive charges by replacing amino acids with positively charged amino acids did not improve antibacterial activity.The peptide,CM12,had broad-spectrum antibacterial activity against both normal bacteria and drug resistant bacteria.Conclusion: Amino acids substitution,deletion and rearrangement have obvious influence on the antibacterial activities of hGlryichin-derived antimibacterial peptides.
Key concepts: Antibacterial activity, Peptide, Antibacterial peptide, Amino acid, Bacteria, Chemistry, Cysteine, Peptide sequence