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利用 MALDI-TOF MS 对 Apis dorsata apamin 进行自上而下测序及对其针对微生物无活性的证据。

Top-down sequencing of Apis dorsata apamin by MALDI-TOF MS and evidence of its inactivity against microorganisms.

机构信息

Department of Biologia Evoluzionistica "Leo Pardi", University of Firenze, Via Romana 17, 50125 Firenze, Italy.

出版信息

Toxicon. 2013 Sep;71:105-12. doi: 10.1016/j.toxicon.2013.05.020. Epub 2013 Jun 7.

Abstract

Apis mellifera venom is one of the best characterized venoms among Hymenoptera, yet relatively little is known about venom belonging to other species in the genus Apis. Melittin, one of the most important bioactive peptides, has been isolated and characterized in A. mellifera, Apis cerana, Apis dorsata and Apis florea, while apamin has been only characterized in A. mellifera and A. cerana. At present, no information is available about the sequence of A. dorsata apamin. Moreover, while the antiseptic properties of melittin and MCD peptides are well documented, the antimicrobial activity of apamin has never been tested. In the present study, we isolated and characterized apamin from the venom of the giant honeybee A. dorsata. We tested the activity of apamin against bacteria and yeasts in a microbiological assay to gain a more complete understanding of the antimicrobial competence of the medium molecular weight venom fraction. We show that A. dorsata apamin toxin has the same primary sequence as apamin in A. mellifera and A. cerana, yet with a different C-terminal amidation. We did not find any antiseptic activity of apamin against any of the tested microorganisms. We discuss the evolutionary processes connected to the ecological context of venom use that drove the generation of Apis venom complexity.

摘要

意大利蜜蜂毒液是膜翅目昆虫中研究得最透彻的毒液之一,但关于属内其他物种的毒液却知之甚少。蜂毒肽是最重要的生物活性肽之一,已在意大利蜜蜂、中华蜜蜂、印度蜜蜂和东方蜜蜂中分离和鉴定,而蜂毒素仅在意大利蜜蜂和中华蜜蜂中得到鉴定。目前,关于印度蜜蜂蜂毒素的序列信息尚不清楚。此外,尽管蜂毒肽和 MCD 肽的防腐性能已有充分的文献记载,但蜂毒素的抗菌活性从未得到过测试。在本研究中,我们从巨型蜜蜂 A. dorsata 的毒液中分离并鉴定了蜂毒素。我们通过微生物测定法测试了蜂毒素对细菌和酵母的活性,以更全面地了解中分子量毒液部分的抗菌能力。我们发现 A. dorsata 蜂毒素毒素与意大利蜜蜂和中华蜜蜂中的蜂毒素具有相同的一级序列,但 C 末端酰胺化不同。我们没有发现蜂毒素对任何测试的微生物有任何防腐活性。我们讨论了与毒液使用的生态背景相关的进化过程,这些过程推动了蜜蜂毒液复杂性的产生。

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