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热带火蚁毒液中重组Sol g 4.1蛋白的鉴定、表达及特性分析

Identification, expression and characterization of the recombinant Sol g 4.1 protein from the venom of the tropical fire ant .

作者信息

Srisong Hathairat, Sukprasert Sophida, Klaynongsruang Sompong, Daduang Jureerut, Daduang Sakda

机构信息

1Protein and Proteomics Research Center for Commercial and Industrial Purposes (ProCCI), Department of Biochemistry, Faculty of Science, Khon Kaen University, Khon Kaen, 40002 Thailand.

2Division of Integrative Medicine, Chulabhorn International College of Medicine, Thammasat University (Rangsit Campus), Pathum Thani, 12120 Thailand.

出版信息

J Venom Anim Toxins Incl Trop Dis. 2018 Aug 29;24:23. doi: 10.1186/s40409-018-0159-6. eCollection 2018.

Abstract

BACKGROUND

Fire ant venom is a complex mixture consisting of basic piperidine alkaloids, various biologically active peptides and protein components, including a variety of major allergenic proteins. Tropical fire ant is an important stinging ant species that causes anaphylaxis and serious medical problems. Although the biological activities of allergenic venom proteins that are unique to ant venom, particularly 2 and 4, are still unknown, these proteins are believed to play important roles in mediating the effects of the piperidine derivatives in the venom.

METHODS

In the present study, the cDNA cloning, sequencing and three-dimensional structure of Sol g 4.1 venom protein are described. The recombinant Sol g 4.1 protein (rSol g 4.1) was produced in , and its possible function as a hydrophobic binding protein was characterized by paralyzing crickets using the 50% piperidine dose (PD). Moreover, an antiserum was produced in mice to determine the allergenic properties of Sol g 4.1, and the antiserum was capable of binding to Sol g 4.1, as determined by Western blotting.

RESULTS

The molecular weight of Sol g 4.1 protein is 16 kDa, as determined by SDS-PAGE. The complete cDNA is 414 bp in length and contains a leader sequence of 19 amino acids. The protein consists of six cysteines that presumably form three disulfide bonds, based on a predicted three-dimensional model, creating the interior hydrophobic pocket and stabilizing the structure. The rSol g 4.1 protein was expressed in inclusion bodies, as determined by SDS-PAGE. Dialysis techniques were used to refold the recombinant protein into the native form. Its secondary structure, which primarily consists of α-helices, was confirmed by circular dichroism analysis, and the three-dimensional model was also verified. The results of allergenic analysis performed on mice showed that the obtained protein was predicted to be allergenically active. Moreover, we report on the possible role of the Sol g 4.1 venom protein, which significantly reduced the PD from 0.027 to 0.013% in paralyzed crickets via synergistic effects after interactions with piperidine alkaloids.

CONCLUSIONS

The primary structure of Sol g 4.1 showed high similarity to that of venom proteins in the 2 and 4 family. Those proteins are life-threatening and produce IgE-mediated anaphylactic reactions in allergic individuals. The possible function of this protein is the binding of the interior hydrophobic pockets with piperidine alkaloids, as determined by the analysis of the structural model and PD test.

摘要

背景

火蚁毒液是一种复杂的混合物,由碱性哌啶生物碱、多种生物活性肽和蛋白质成分组成,包括多种主要变应原蛋白。热带火蚁是一种重要的叮人蚁种,可引发过敏反应和严重的医学问题。尽管蚁毒液特有的变应原性毒液蛋白(尤其是Sol g 4.1和Sol g 2)的生物学活性仍不清楚,但据信这些蛋白在介导毒液中哌啶衍生物的作用方面发挥着重要作用。

方法

在本研究中,描述了Sol g 4.1毒液蛋白的cDNA克隆、测序及三维结构。重组Sol g 4.1蛋白(rSol g 4.1)在大肠杆菌中产生,使用50%哌啶剂量(PD)使蟋蟀麻痹,以此表征其作为疏水结合蛋白的可能功能。此外,在小鼠中制备抗血清以确定Sol g 4.1的变应原特性,经蛋白质免疫印迹法测定,该抗血清能够与Sol g 4.1结合。

结果

经十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳(SDS - PAGE)测定,Sol g 4.1蛋白的分子量为16 kDa。完整的cDNA长度为414 bp,包含一个19个氨基酸的前导序列。基于预测的三维模型,该蛋白由六个半胱氨酸组成,推测形成三个二硫键,形成内部疏水口袋并稳定结构。经SDS - PAGE测定,rSol g 4.1蛋白在包涵体中表达。采用透析技术将重组蛋白重折叠成天然形式。通过圆二色性分析证实其二级结构主要由α - 螺旋组成,三维模型也得到验证。对小鼠进行的变应原分析结果表明,所获得的蛋白预计具有变应原活性。此外,我们报道了Sol g 4.1毒液蛋白的可能作用,该蛋白与哌啶生物碱相互作用后,通过协同效应使麻痹蟋蟀的PD从0.027%显著降低至0.013%。

结论

Sol g 4.1的一级结构与Sol g 2和Sol g 4家族的毒液蛋白高度相似。这些蛋白会危及生命,并在过敏个体中引发IgE介导的过敏反应。通过结构模型分析和PD试验确定,该蛋白的可能功能是内部疏水口袋与哌啶生物碱结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3634/6116302/b4f7c222b847/40409_2018_159_Fig1_HTML.jpg

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