Characterization of the Hemolytic Activity of Mastoparan Family Peptides from Wasp Venoms

Toxins (Basel). 2023 Sep 28;15(10):591. doi: 10.3390/toxins15100591.

Abstract

Biologically active peptides have attracted increasing attention in research on the development of new drugs. Mastoparans, a group of wasp venom linear cationic α-helical peptides, have a variety of biological effects, including mast cell degranulation, activation of protein G, and antimicrobial and anticancer activities. However, the potential hemolytic activity of cationic α-helical peptides greatly limits the clinical applications of mastoparans. Here, we systematically and comprehensively studied the hemolytic activity of mastoparans based on our wasp venom mastoparan family peptide library. The results showed that among 55 mastoparans, 18 had strong hemolytic activity (EC50 ≤ 100 μM), 14 had modest hemolytic activity (100 μM < EC50 ≤ 400 μM) and 23 had little hemolytic activity (EC50 > 400 μM), suggesting functional variation in the molecular diversity of mastoparan family peptides from wasp venom. Based on these data, structure-function relationships were further explored, and, hydrophobicity, but not net charge and amphiphilicity, was found to play a critical role in the hemolytic activity of mastoparans. Combining the reported antimicrobial activity with the present hemolytic activity data, we found that four mastoparan peptides, Parapolybia-MP, Mastoparan-like peptide 12b, Dominulin A and Dominulin B, have promise for applications because of their high antimicrobial activity (MIC ≤ 10 μM) and low hemolytic activity (EC50 ≥ 400 μM). Our research not only identified new leads for the antimicrobial application of mastoparans but also provided a large chemical space to support the molecular design and optimization of mastoparan family peptides with low hemolytic activity regardless of net charge or amphiphilicity.

Keywords: antimicrobial activity; hemolytic activity; mastoparan family peptide; wasp venom.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Anti-Infective Agents* / pharmacology
  • Hemolysis
  • Intercellular Signaling Peptides and Proteins / metabolism
  • Intercellular Signaling Peptides and Proteins / pharmacology
  • Peptides / chemistry
  • Wasp Venoms / chemistry
  • Wasps* / chemistry

Substances

  • mastoparan
  • Wasp Venoms
  • Peptides
  • Intercellular Signaling Peptides and Proteins
  • Anti-Infective Agents

Grants and funding

This work was supported by grants from the National Natural Sciences Foundation of China (82204407 and 81973321), Foundation of Health Commission of Hubei Province (WJ2021M060), Cultivating Project for Young Scholar at the Hubei University of Medicine (2020QDJZR011), and The Open Project of Hubei Key Laboratory of Wudang Local Chinese Medicine Research (Hubei University of Medicine) (Grant No. WDCM2023011).