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巴西利什曼原虫:无鞭毛体发育过程中脂磷壁酸调控的新机制

Leishmania braziliensis: a novel mechanism in the lipophosphoglycan regulation during metacyclogenesis.

作者信息

Soares Rodrigo P P, Cardoso Tatiana L, Barron Tamara, Araújo Márcio S S, Pimenta Paulo F P, Turco Salvatore J

机构信息

Department of Biochemistry, University of Kentucky Medical Center, Lexington, KY 40536, USA.

出版信息

Int J Parasitol. 2005 Mar;35(3):245-53. doi: 10.1016/j.ijpara.2004.12.008. Epub 2005 Jan 24.

Abstract

During metacyclogenesis of Leishmania in its sand fly vector, the parasite differentiates from a noninfective, procyclic form to an infective, metacyclic form, a process characterised by morphological changes of the parasite and also biochemical transformations in its major surface lipophosphoglycan (LPG). This lipid-anchored polysaccharide is polymorphic among species with variations in sugars that branch off the conserved Gal(beta1,4)Man(alpha1)-PO4 backbone of repeat units and the oligosaccharide cap. Lipophosphoglycan has been implicated as an adhesion molecule that mediates the interaction with the midgut epithelium of the sand fly in the subgenus Leishmania. This paper describes the LPG structure for the first time in a species from the subgenus Viannia, Leishmania (Viannia) braziliensis. The LPG from the procyclic form of L. braziliensis was found to lack side chain sugar substitutions. In contrast to other species from the subgenus Leishmania, metacyclic forms of L. braziliensis makes less LPG and add 1-2 (beta1-3) glucose residues that branch off the disaccharide-phosphate repeat units of LPG. Thus, this represents a novel mechanism in the regulation of LPG structure during metacyclogenesis.

摘要

在利什曼原虫于其白蛉传播媒介中进行循环后期发育过程中,该寄生虫从无感染性的前循环型分化为有感染性的循环后期型,这一过程的特征是寄生虫的形态变化以及其主要表面脂磷壁酸(LPG)的生化转变。这种脂质锚定多糖在不同物种间具有多态性,其重复单元和寡糖帽的保守Gal(β1,4)Man(α1)-PO4主链上分支的糖存在差异。脂磷壁酸被认为是一种黏附分子,介导利什曼原虫亚属中与白蛉中肠上皮的相互作用。本文首次描述了维安亚属一个物种——巴西利什曼原虫(Leishmania (Viannia) braziliensis)的LPG结构。发现巴西利什曼原虫前循环型的LPG缺乏侧链糖取代。与利什曼原虫亚属的其他物种不同,巴西利什曼原虫的循环后期型产生的LPG较少,并在LPG的二糖磷酸重复单元上添加1 - 2个(β1 - 3)葡萄糖残基。因此,这代表了循环后期发育过程中LPG结构调控的一种新机制。

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