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Structure and functional features of olive pollen pectin methylesterase using homology modeling and molecular docking methods

机译:同源建模和分子对接方法研究橄榄花粉果胶甲酯酶的结构和功能特点

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摘要

Pectin methylesterases (PMEs), a multigene family of proteins with multiple differentially regulated isoforms, are key enzymes implicated in the carbohydrates (pectin) metabolism of cell walls. Olive pollen PME has been identified as a new allergen (Ole e 11) of potential relevance in allergy amelioration, since it exhibits high prevalence among atopic patients. In this work, the structural and functional characterization of two olive pollen PME isoforms and their comparison with other PME plants was performed by using different approaches: (1) the physicochemical properties and functional-regulatory motifs characterization, (2) primary sequence analysis, 2D and 3D comparative structural features study, (3) conservation and evolutionary analysis, (4) catalytic activity and regulation based on molecular docking analysis of a homologue PME inhibitor, and (5) B-cell epitopes prediction by sequence and structural based methods and protein-protein interaction tools, while T-cell epitopes by inhibitory concentration and binding score methods. Our results indicate that the structural differences and low conservation of residues, together with differences in physicochemical and posttranslational motifs might be a mechanism for PME isovariants generation, regulation, and differential surface epitopes generation. Olive PMEs perform a processive catalytic mechanism, and a differential molecular interaction with specific PME inhibitor, opening new possibilities for PME activity regulation. Despite the common function of PMEs, differential features found in this study will lead to a better understanding of the structural and functional characterization of plant PMEs and help to improve the component-resolving diagnosis and immunotherapy of olive pollen allergy by epitopes identification.
机译:果胶甲基酯酶(PMEs)是具有多个差异调节同工型的蛋白质的多基因家族,是与细胞壁碳水化合物(果胶)代谢有关的关键酶。橄榄花粉PME已被确认为与过敏改善潜在相关的新过敏原(Ole e 11),因为它在特应性患者中表现出很高的患病率。在这项工作中,两种橄榄花粉PME同工型的结构和功能表征以及它们与其他PME植物的比较是通过不同的方法进行的:(1)理化特性和功能调控基序表征,(2)主要序列分析,二维和3D比较结构特征研究,(3)保守和进化分析,(4)基于分子对接分析的同源PME抑制剂的催化活性和调控,以及(5)通过基于序列和结构的方法和蛋白质预测B细胞表位-蛋白质相互作用工具,而T细胞表位则通过抑制浓度和结合评分法来确定。我们的结果表明,结构上的差异和残基的低保守性以及理化和翻译后基序的差异可能是PME等变体生成,调控和表面差异表位生成的机制。橄榄PME执行过程性催化机制,并与特定PME抑制剂产生不同的分子相互作用,为PME活性调节开辟了新的可能性。尽管PME具有共同的功能,但本研究中发现的差异特征将导致人们更好地理解植物PME的结构和功能特性,并有助于通过表位鉴定改善橄榄花粉过敏的成分解析诊断和免疫疗法。

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