首页> 外文期刊>Journal of proteome research >Using Proteomic Strategies for Sequencing and Post-Translational Modifications Assignment of Antigen-5, a Major Allergen from the Venom of the Social Wasp Polybia paulista
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Using Proteomic Strategies for Sequencing and Post-Translational Modifications Assignment of Antigen-5, a Major Allergen from the Venom of the Social Wasp Polybia paulista

机译:使用蛋白质组学策略进行抗原5的测序和翻译后修饰分配,抗原5是来自社会黄蜂多鞭毛虫paulista毒液的主要变应原

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Antigen-5 is one of the major allergens identified in wasp venoms, and despite the fact that its biological function is still unknown, many studies have demonstrated its allergenicity. In this study, the biochemical and structural characterization of antigen-5 from the venom of the social wasp Polybia paulista are reported. A gel-based mass spectrometry strategy with CID fragmentation methods and classical protocols of protein chemistry, which included N- and C-terminal sequencing, were used to assign the complete sequence and determine the presence/location of the post-translational modifications (PTMs) of this protein. Six different isoforms of antigen-5 were identified in the crude venom of P. paulista; the most abundant, which corresponds to the intact form of this protein, was recognized by the pool of human specific-IgE. This protein was extensively sequenced through CID mass spectrometry, and a series of PTMs were observed such as hydroxylation, phosphorylation, and glycosylation. Sequence data revealed that this protein has 59.3?93.7% identity with antigen-5 proteins from other known vespid venoms. The molecular model of P. paulista antigen-5 shows that this protein has three α-helices, one 3_(10) helix, and four β-sheets covering 28 and 17.9% of the sequence, respectively. The identification and characterization of allergenic compounds is essential for the development of advanced component-resolved allergy diagnostics and treatment.
机译:抗原5是在黄蜂毒液中鉴定出的主要过敏原之一,尽管其生物学功能仍是未知的,但许多研究已证明其致敏性。在这项研究中,报道了来自社会黄蜂Polybia paulista毒液的抗原5的生化和结构表征。基于凝胶的质谱分析策略,CID片段化方法和经典的蛋白质化学方法(包括N端和C端测序)被用于分配完整序列,并确定翻译后修饰(PTM)的存在/位置这种蛋白质。在鲍氏假单胞菌的粗毒液中鉴定出六种不同的抗原5亚型。最丰富的,对应于该蛋白的完整形式,被人类特异性IgE库识别。该蛋白通过CID质谱进行了广泛的测序,并观察到一系列PTM,例如羟基化,磷酸化和糖基化。序列数据表明,该蛋白与其他已知的小毒蛇毒的抗原5蛋白具有59.3%〜93.7%的同一性。 P. paulista抗原5的分子模型显示该蛋白具有3个α-螺旋,1个3_(10)螺旋和4个β-折叠,分别覆盖序列的28%和17.9%。过敏原化合物的鉴定和表征对于开发先进的成分分辨过敏诊断和治疗至关重要。

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