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独居胡蜂毒液成分的综合分析与生物学特性研究

Comprehensive Analysis and Biological Characterization of Venom Components from Solitary Scoliid Wasp .

机构信息

Experimental Morphophysiology Laboratory, Natural and Humanities Sciences Center, Federal University of ABC (UFABC), São Bernardo do Campo 09606-070, SP, Brazil.

Structure and Functions of Biomolecules Laboratory, Butantan Institute, São Paulo 05503-900, SP, Brazil.

出版信息

Toxins (Basel). 2021 Dec 10;13(12):885. doi: 10.3390/toxins13120885.

Abstract

Venoms of solitary wasps are utilized for prey capture (insects and spiders), paralyzing them with a stinger injection to be offered as food for their larvae. Thus, the identification and characterization of the components of solitary wasp venoms can have biotechnological application. In the present study, the venom components profile of a solitary scoliid wasp, , was investigated through a comprehensive analysis using LC-MS and -MS/MS. Online mass fingerprinting revealed that the venom extract contains 138 components, and MS/MS analysis identified 44 complete sequences of the peptide components. The peptides are broadly divided into two classes: bradykinin-related peptides, and linear α-helical peptides. Among the components of the first class, the two main peptides, α-campsomerin (PRLRRLTGLSPLR) and β-campsomerin (PRLRRLTGLSPLRAP), had their biological activities evaluated. Both peptides had no effects on metallopeptidases [human neprilysin (NEP) and angiotensin-converting enzyme (ACE)] and acetylcholinesterase (AChE), and had no cytotoxic effects. Studies with PC12 neuronal cells showed that only α-campsomerin was able to enhance cell viability, while β-campsomerin had no effect. It is noteworthy that the only difference between the primary structures from these peptides is the presence of the AP extension at the C-terminus of β-campsomerin, compared to α-campsomerin. Among the linear α-helical peptides, annulatin (ISEALKSIIVG-NH) was evaluated for its biological activities. Annulatin showed histamine releasing activity from mast cells and low hemolytic activity, but no antimicrobial activities against all microbes tested were observed. Thus, in addition to providing unprecedented information on the whole components, the three peptides selected for the study suggest that molecules present in solitary scoliid wasp venoms may have interesting biological activities.

摘要

独居黄蜂的毒液用于捕获猎物(昆虫和蜘蛛),它们用螫针注射毒液将猎物麻痹,作为幼虫的食物。因此,鉴定和描述独居黄蜂毒液的成分具有生物技术应用的潜力。在本研究中,通过使用 LC-MS 和 MS/MS 的综合分析,研究了一种独居 scoliid 黄蜂的毒液成分谱。在线质量指纹图谱显示,毒液提取物含有 138 种成分,MS/MS 分析鉴定了 44 种完整的肽成分序列。这些肽广泛分为两类:缓激肽相关肽和线性α-螺旋肽。在第一类成分中,两种主要肽,α-campsomerin(PRLRRLTGLSPLR)和β-campsomerin(PRLRRLTGLSPLRAP),其生物活性得到了评估。这两种肽都对金属肽酶[人肾素(NEP)和血管紧张素转换酶(ACE)]和乙酰胆碱酯酶(AChE)没有影响,也没有细胞毒性。用 PC12 神经元细胞进行的研究表明,只有α-campsomerin 能够增强细胞活力,而β-campsomerin 则没有作用。值得注意的是,这两种肽的一级结构仅有的区别是β-campsomerin 在 C 末端存在 AP 延伸,而α-campsomerin 则没有。在线性α-螺旋肽中,对 annulatin(ISEALKSIIVG-NH)的生物活性进行了评估。Annulatin 显示了从肥大细胞中释放组胺的活性和低的溶血活性,但对所有测试的微生物都没有观察到抗菌活性。因此,除了提供关于整个成分的前所未有的信息外,研究中选择的三种肽表明,独居黄蜂毒液中的分子可能具有有趣的生物活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/239f/8708821/793d9a9a440d/toxins-13-00885-g001.jpg

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