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Bioinformatics and Functional Analysis of an Entamoeba histolytica Mannosyltransferase Necessary for Parasite Complement Resistance and Hepatical Infection

机译:寄生虫补体抗药性和肝感染所必需的一种溶血性变形虫变形虫甘露糖基转移酶的生物信息学和功能分析

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摘要

The glycosylphosphatidylinositol (GPI) moiety is one of the ways by which many cell surface proteins, such as Gal/GalNAc lectin and proteophosphoglycans (PPGs) attach to the surface of Entamoeba histolytica, the agent of human amoebiasis. It is believed that these GPI-anchored molecules are involved in parasite adhesion to cells, mucus and the extracellular matrix. We identified an E. histolytica homolog of PIG-M, which is a mannosyltransferase required for synthesis of GPI. The sequence and structural analysis led to the conclusion that EhPIG-M1 is composed of one signal peptide and 11 transmembrane domains with two large intra luminal loops, one of which contains the DXD motif, involved in the enzymatic catalysis and conserved in most glycosyltransferases. Expressing a fragment of the EhPIG-M1 encoding gene in antisense orientation generated parasite lines diminished in EhPIG-M1 levels; these lines displayed reduced GPI production, were highly sensitive to complement and were dramatically inhibited for amoebic abscess formation. The data suggest a role for GPI surface anchored molecules in the survival of E. histolytica during pathogenesis.
机译:糖基磷脂酰肌醇(GPI)部分是许多细胞表面蛋白(例如Gal / GalNAc凝集素和蛋白磷酸聚糖(PPG))附着于人阿米巴病的溶血变形杆菌的表面的一种方式。据信,这些GPI锚定的分子参与寄生虫对细胞,粘液和细胞外基质的粘附。我们确定了PIG-M的溶血性大肠杆菌的同源物,这是合成GPI所需的甘露糖基转移酶。序列和结构分析得出的结论是,EhPIG-M1由一个信号肽和11个跨膜结构域组成,具有两个大的腔内环,其中一个包含DXD基序,参与酶催化并在大多数糖基转移酶中保守。以反义方向表达EhPIG-M1编码基因的片段产生的寄生虫品系减少了EhPIG-M1的水平;这些品系显示出降低的GPI产生,对补体高度敏感,并显着抑制了阿米巴脓肿的形成。数据表明在发病过程中GPI表面锚定分子在溶组织性大肠杆菌的存活中具有作用。

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