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阿拉伯金合欢凝集素样蛋白的分子模拟揭示了其在角叉菜胶诱导的炎症中可能的抗炎机制。

Molecular modeling of lectin-like protein from Acacia farnesiana reveals a possible anti-inflammatory mechanism in Carrageenan-induced inflammation.

作者信息

Abrantes Vanessa Erika Ferreira, Matias da Rocha Bruno Anderson, Batista da Nóbrega Raphael, Silva-Filho José Caetano, Teixeira Claudener Souza, Cavada Benildo Sousa, Gadelha Carlos Alberto de Almeida, Ferreira Sergio Henrique, Figueiredo Jozi Godoy, Santi-Gadelha Tatiane, Delatorre Plinio

机构信息

Departamento de Biologia Molecular, Universidade Federal da Paraíba, Campus I, Cidade Universitária, 58059-900 João Pessoa, PB, Brazil.

Departamento de Bioquímica e Biologia Molecular, Universidade Federal do Ceará, BioMol-Lab, Campus do Pici S/N, 60440-970 Fortaleza, CE, Brazil.

出版信息

Biomed Res Int. 2013;2013:253483. doi: 10.1155/2013/253483. Epub 2013 Dec 30.

Abstract

Acacia farnesiana lectin-like protein (AFAL) is a chitin-binding protein and has been classified as phytohaemagglutinin from Phaseolus vulgaris (PHA). Legume lectins are examples for structural studies, and this family of proteins shows a remarkable conservation in primary, secondary, and tertiary structures. Lectins have ability to reduce the effects of inflammation caused by phlogistic agents, such as carrageenan (CGN). This paper explains the anti-inflammatory activity of AFAL through structural comparison with anti-inflammatory legume lectins. The AFAL model was obtained by molecular modeling and molecular docking with glycan and carrageenan were performed to explain the AFAL structural behavior and biological activity. Pisum sativum lectin was the best template for molecular modeling. The AFAL structure model is folded as a β sandwich. The model differs from template in loop regions, number of β strands and carbohydrate-binding site. Carrageenan and glycan bind to different sites on AFAL. The ability of AFAL binding to carrageenan can be explained by absence of the sixth β -strand (posterior β sheets) and two β strands in frontal region. AFAL can inhibit pathway inflammatory process by carrageenan injection by connecting to it and preventing its entry into the cell and triggers the reaction.

摘要

阿拉伯金合欢凝集素样蛋白(AFAL)是一种几丁质结合蛋白,已被归类为菜豆(PHA)中的植物血凝素。豆科凝集素是结构研究的实例,并且这类蛋白质在一级、二级和三级结构上显示出显著的保守性。凝集素具有减轻由炎症介质(如角叉菜胶(CGN))引起的炎症作用的能力。本文通过与抗炎豆科凝集素的结构比较来解释AFAL的抗炎活性。通过分子建模获得AFAL模型,并与聚糖和角叉菜胶进行分子对接,以解释AFAL的结构行为和生物学活性。豌豆凝集素是分子建模的最佳模板。AFAL结构模型折叠成β三明治结构。该模型在环区、β链数量和碳水化合物结合位点方面与模板不同。角叉菜胶和聚糖与AFAL上的不同位点结合。AFAL与角叉菜胶结合的能力可以通过第六个β链(后部β片层)和前部区域的两条β链缺失来解释。AFAL可以通过与角叉菜胶连接并阻止其进入细胞并引发反应来抑制角叉菜胶注射引起的炎症过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7dd/3893743/1f811e2af077/BMRI2013-253483.001.jpg

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