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Hyaluronidase from the venom of the social wasp Polybia paulista (Hymenoptera, Vespidae): Cloning, structural modeling, purification, and immunological analysis

机译:来自社会黄蜂Polybia paulista(Hymenoptera,Vespidae)毒液的透明质酸酶:克隆,结构建模,纯化和免疫分析

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摘要

In this study, we describe the cDNA cloning, sequencing, and 3-D structure of the allergen hyaluronidase from Polybia paulista venom (Pp-Hyal). Using a proteomic approach, the native form of Pp-Hyal was purified to homogeneity and used to produce a Pp-specific polyclonal antibody. The results revealed that Pp-Hyal can be classified as a glycosyl hydrolase and that the full-length Pp-Hyal cDNA (1315 bp; GI: 302201582) is similar (80-90%) to hyaluronidase from the venoms of endemic Northern wasp species. The isolated mature protein is comprised of 338 amino acids, with a theoretical pI of 8.77 and a molecular mass of 39,648.8 Da versus a pI of 8.13 and 43,277.0 Da indicated by MS. The Pp-Hyal 3D-structural model revealed a central core (α/β)7 barrel, two sulfide bonds (Cys 19-308 and Cys 185-197), and three putative glycosylation sites (Asn79, Asn187, and Asn325), two of which are also found in the rVes v 2 protein. Based on the model, residues Ser299, Asp107, and Glu109 interact with the substrate and potential epitopes (five conformational and seven linear) located at surface-exposed regions of the structure. Purified native Pp-Hyal showed high similarity (97%) with hyaluronidase from Polistes annularis venom (Q9U6V9). Immunoblotting analysis confirmed the specificity of the Pp-Hyal-specific antibody as it recognized the Pp-Hyal protein in both the purified fraction and P. paulista crude venom. No reaction was observed with the venoms of Apis mellifera, Solenopsis invicta, Agelaia pallipes pallipes, and Polistes lanio lanio, with the exception of immune cross-reactivity with venoms of the genus Polybia (sericea and ignobilis). Our results demonstrate cross-reactivity only between wasp venoms from the genus Polybia. The absence of cross-reactivity between the venoms of wasps and bees observed here is important because it allows identification of the insect responsible for sensitization, or at least of the phylogenetically closest insect, in order to facilitate effective immunotherapy in allergic patients. © 2013 Elsevier Ltd.
机译:在这项研究中,我们描述了来自Polybia paulista毒液(Pp-Hyal)的变应原透明质酸酶的cDNA克隆,测序和3-D结构。使用蛋白质组学方法,将Pp-Hyal的天然形式纯化至均质,并用于生产Pp特异性多克隆抗体。结果表明,Pp-Hyal可以归类为糖基水解酶,全长Pp-Hyal cDNA(1315 bp; GI:302201582)与来自地方性北黄蜂物种毒液的透明质酸酶相似(80-90%)。 。分离的成熟蛋白由338个氨基酸组成,理论pI为8.77,分子量为39,648.8 Da,而MS的pI为8.13和43,277.0 Da。 Pp-Hyal 3D结构模型显示了一个中心核心(α/β)7桶,两个硫键(Cys 19-308和Cys 185-197)以及三个推定的糖基化位点(Asn79,Asn187和Asn325),其中两个其中rVes v 2蛋白中也有发现。基于该模型,残基Ser299,Asp107和Glu109与底物和位于结构表面暴露区域的潜在表位(五个构象和七个线性)相互作用。纯化的天然Pp-Hyal与Polistes ringis毒液(Q9U6V9)的透明质酸酶显示出高度相似性(97%)。免疫印迹分析证实了Pp-Hyal特异性抗体的特异性,因为它在纯化的级分和paulista paulista粗毒液中均识别了Pp-Hyal蛋白。除与蜜蜂属毒液的免疫交叉反应性外,未观察到与蜜蜂,毒蛇,苍白苍蝇和Po蒲的毒液发生任何反应。我们的结果表明,仅来自Polybia属的黄蜂毒液之间具有交叉反应性。在这里观察到的黄蜂和蜜蜂的毒液之间没有交叉反应是重要的,因为它可以识别引起过敏的昆虫,或者至少是系统发育最接近的昆虫,以便于对过敏性患者进行有效的免疫治疗。 ©2013爱思唯尔有限公司。

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