Abstract

The bee venom antimicrobial peptide, melittin, besides showing versatile activity against microorganisms also neutralizes lipopolysaccharide (LPS)-induced proinflammatory responses in macrophage cells. However, how the amino acid sequence of melittin contributes in its anti-inflammatory properties is mostly unknown. To determine the importance of the leucine zipper sequence of melittin in its neutralization of LPS-induced inflammatory responses in macrophages and interaction with LPS, anti-inflammatory properties of melittin and its three analogues and their interactions with LPS were studied in detail. Two of these analogues, namely melittin Mut-1 (MM-1) and melittin Mut-2 (MM-2), possess leucine to alanine substitutions in the single and double heptadic leucine residue(s) of melittin, respectively, whereas the third analogue is a scrambled peptide (Mel-SCR) that contains the amino acid composition of melittin with minor rearrangement in its leucine zipper sequence. Although MM-1 partly inhibited the production of proinflammatory cytokines in RAW 264.7 and rat primary macrophage cells in the presence of LPS, MM-2 and Mel-SCR were negligibly active. A progressive decrease in interaction of melittin with LPS, aggregation in LPS, and dissociation of LPS aggregates with alteration in the leucine zipper sequence of melittin was observed. Furthermore, with alteration in the leucine zipper sequence of melittin, these analogues failed to exhibit cellular responses associated with neutralization of LPS-induced inflammatory responses in macrophage cells by melittin. The data indicated a probable important role of the leucine zipper sequence of melittin in neutralizing LPS-induced proinflammatory responses in macrophage cells as well as in its interaction with LPS.

Highlights

  • Bee venom antimicrobial peptide, melittin, neutralizes LPS-induced proinflammatory response in macrophage cells

  • The results suggested the partial efficacy of MM-1 and the almost negligible effect of MM-2 and melittin wild type (Mel)-SCR toward the LPSinduced NO production in RAW264.7 macrophage cells

  • The results presented show a significant impact of substitutions of leucine by alanine residue(s) in the leucine zipper sequence of melittin on its neutralization of the LPS-induced proinflammatory response in the macrophage cell line, RAW 264.7

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Summary

Background

Melittin, neutralizes LPS-induced proinflammatory response in macrophage cells. To determine the importance of the leucine zipper sequence of melittin in its neutralization of LPS-induced inflammatory responses in macrophages and interaction with LPS, anti-inflammatory properties of melittin and its three analogues and their interactions with LPS were studied in detail. Encouraged by the previous observations we considered that it would be interesting to explore the importance of this motif in melittin in neutralizing the LPS-induced inflammatory response in macrophage cells along with understanding the underlying mechanism of action For this purpose, the previously designed analogues [13], viz. We observed a progressive decrease in the activity of melittin analogues with leucine to alanine residue(s) substitutions in the leucine zipper sequence with respect to their interaction with LPS, peptide-induced disaggregation of LPS aggregates, decline in LPS-induced cytokine production, and other cellular responses in macrophage cells. RAW 264.7, as well as rat primary macrophage cells were utilized to examine the LPS-induced cytokine and cellular responses in the presence of melittin and its analogues

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