Suppr超能文献

毒蜥(Heloderma suspectum suspectum)毒液蛋白质组的表征

Characterization of the gila monster (Heloderma suspectum suspectum) venom proteome.

作者信息

Sanggaard Kristian W, Dyrlund Thomas F, Thomsen Line R, Nielsen Tania A, Brøndum Lars, Wang Tobias, Thøgersen Ida B, Enghild Jan J

机构信息

Department of Molecular Biology and Genetics, Aarhus University, Denmark; Interdisciplinary Nanoscience Center, Aarhus University, Denmark.

Department of Molecular Biology and Genetics, Aarhus University, Denmark.

出版信息

J Proteomics. 2015 Mar 18;117:1-11. doi: 10.1016/j.jprot.2015.01.004. Epub 2015 Jan 17.

Abstract

UNLABELLED

The archetypical venomous lizard species are the helodermatids, the gila monsters (Heloderma suspectum) and the beaded lizards (Heloderma horridum). In the present study, the gila monster venom proteome was characterized using 2D-gel electrophoresis and tandem mass spectrometry-based de novo peptide sequencing followed by protein identification based on sequence homology. A total of 39 different proteins were identified out of the 58 selected spots that represent the major constituents of venom. Of these proteins, 19 have not previously been identified in helodermatid venom. The data showed that helodermatid venom is complex and that this complexity is caused by genetic isoforms and post-translational modifications including proteolytic processing. In addition, the venom proteome analysis revealed that the major constituents of the gila monster venom are kallikrein-like serine proteinases (EC 3.4.21) and phospholipase A2 (type III) enzymes (EC 3.1.1.4). A neuroendocrine convertase 1 homolog that most likely converts the proforms of the previously identified bioactive exendins into the mature and active forms was identified suggesting that these peptide toxins are secreted as proforms that are activated by proteolytic cleavage following secretion as opposed to being activated intracellularly. The presented global protein identification-analysis provides the first overview of the helodermatid venom composition.

BIOLOGICAL SIGNIFICANCE

The helodermatid lizards are the classical venomous lizards, and the pharmacological potential of the venom from these species has been known for years; best illustrated by the identification of exendin-4, which is now used in the treatment of type 2 diabetes. Despite the potential, no global analyses of the protein components in the venom exist. A hindrance is the lack of a genome sequence because it prevents protein identification using a conventional approach where MS data are searched against predicted protein sequences based on the genome sequence. However, in the recent years the development of software tools for de novo sequencing and homology searches have improved significantly facilitating the first global analysis of the major protein components of helodermatid venom presented in this study. We have used a 2D-gel approach and determined the protein components in the 58 major spots resulting in the identification of 39 unique proteins. Of these, 19 have not previously been identified in helodermatid venom. The analysis provides results with impact on our understanding of the function and evolution of venom proteins, and serves as a basis for further unraveling of the pharmaceutical potential of the venom components.

摘要

未标记

典型的有毒蜥蜴种类是毒蜥科动物,如吉拉毒蜥(Heloderma suspectum)和珠毒蜥(Heloderma horridum)。在本研究中,利用二维凝胶电泳和基于串联质谱的从头肽测序对吉拉毒蜥毒液蛋白质组进行了表征,随后基于序列同源性进行蛋白质鉴定。在代表毒液主要成分的58个选定斑点中,共鉴定出39种不同的蛋白质。在这些蛋白质中,有19种此前未在毒蜥科动物毒液中被鉴定出来。数据表明,毒蜥科动物毒液很复杂,这种复杂性是由基因异构体和包括蛋白水解加工在内的翻译后修饰引起的。此外,毒液蛋白质组分析显示,吉拉毒蜥毒液的主要成分是激肽释放酶样丝氨酸蛋白酶(EC 3.4.21)和磷脂酶A2(III型)酶(EC 3.1.1.4)。鉴定出一种神经内分泌转化酶1同源物,它很可能将先前鉴定的生物活性艾塞那肽原转化为成熟的活性形式,这表明这些肽毒素是以原形式分泌的,在分泌后通过蛋白水解切割被激活,而不是在细胞内被激活。所呈现的全局蛋白质鉴定分析首次概述了毒蜥科动物毒液的组成。

生物学意义

毒蜥科蜥蜴是经典的有毒蜥蜴,这些物种毒液的药理潜力多年来已为人所知;艾塞那肽-4的鉴定就是最好的例证,它现在被用于治疗2型糖尿病。尽管有这种潜力,但目前还没有对毒液中的蛋白质成分进行全局分析。一个障碍是缺乏基因组序列,因为这使得无法使用传统方法进行蛋白质鉴定,即根据基因组序列对质谱数据与预测的蛋白质序列进行比对。然而,近年来,用于从头测序和同源性搜索的软件工具得到了显著改进,这有助于对本研究中呈现的毒蜥科动物毒液的主要蛋白质成分进行首次全局分析。我们采用二维凝胶方法,确定了58个主要斑点中的蛋白质成分,从而鉴定出39种独特的蛋白质。其中,有19种此前未在毒蜥科动物毒液中被鉴定出来。该分析结果对我们理解毒液蛋白质的功能和进化具有重要意义,并为进一步揭示毒液成分的药用潜力奠定了基础。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验