4.4 Article

Structural and functional characterization of N-terminally blocked peptides isolated from the venom of the social wasp Polybia paulista

期刊

PEPTIDES
卷 25, 期 12, 页码 2069-2078

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/j.peptides.2004.08.019

关键词

Polybia paulista; N-terminally blocked peptides; tandem mass spectrometry; inflammatory peptides; wasp venom toxins

资金

  1. Fundacao de Amparo a Pesquisa do Estado de Sao Paulo (FAPESP) [01/07532-0] Funding Source: FAPESP

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Two novel peptides were isolated from the crude venom of the social wasp Polybia paulista, by using PP-HPLC under a gradient of MeCN from 5 to 60% (v/v) and named Polybine-I and -II. Further purification Of these peptides under nor-mal phase chromatography rendered pure enough preparations to be sequenced by Edman degradation chemistry. However. both peptides did not interact with phenylisothiocyanate reagent, suggesting the existence of a chemically blocked N-terminus. Therefore. the sequences of both peptides were as:assigned by ESI-MS/MS under CID conditions, as follows: Polybine-I Ac-SADLVKKIWDNPA-L-NH2, (Mr 1610 Da) and Polybine-II Ac-SVDMVMKGLKIWPL-NH2 (Mr 1657 Da). During the tandem mass spectrometry experiments, a loss of 43 a.m.u. was observed from the N-terminal residue of each peptide. suggesting the acetylation of the N-terminus. Subsequently, the peptides with and without acetylation were synthesized on solid phase and submitted to functional characterizations: the biological activities investigated were: hemolysis, chemotaxis of polymorphonucleated leukocytes (PMNL), mast cell degranulation and antibiosis. The results revealed that the acetylated peptides exhibited more pronounced chemotaxis of PMNL cells and mast cell degranulation than the respective non-acetylated congeners: no hemolytic and antibiotic activities were observed, irrespective to the blockage or not of the alpha-amino groups of the N-terminal residues of each peptide. Therefore. the N-terminal acetylation may be related to the increase of the inflammatory activity of both peptides. (C) 2004 Elsevier Inc. All rights reserved.

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