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Variant surface glycoproteins from Venezuelan trypanosome isolates are recognized by sera from animals infected with either Trypanosoma evansi or Trypanosoma vivax

机译:委内瑞拉锥虫分离株的表面糖蛋白变异体被伊凡氏锥虫或间日锥虫感染动物的血清识别

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摘要

Salivarian trypanosomes sequentially express only one variant surface glycoprotein (VSG) on their cell surface from a large repertoire of VSG genes. Seven cryopreserved animal trypanosome isolates known as TeAp-ElFrio01, TEVA1 (or TeAp-N/D1), TeGu-N/D1, TeAp-Mantecal01, TeGu-TerecayTrino, TeGu-Terecay03 and TeGu-Terecay323, which had been isolated from different hosts identified in several geographical areas of Venezuela were expanded using adult albino rats. Soluble forms of predominant VSGs expressed during the early infection stages were purified and corresponded to concanavalin A-binding proteins with molecular masses of 48–67 kDa by sodium dodecyl sulfate-polyacrylamide gel electropohoresis, and pI values between 6.1 and 7.5. The biochemical characterization of all purified soluble VSGs revealed that they were dimers in their native form and represented different gene products. Sequencing of some of these proteins yielded peptides homologous to VSGs from Trypanosoma (Trypanozoon) brucei and Trypanosoma (Trypanozoon) evansi and established that they most likely are mosaics generated by homologous recombination. Western blot analysis showed that all purified VSGs were cross-reacting antigens that were recognized by sera from animals infected with either T. evansi or Trypanosoma (Dutonella) vivax. The VSG glycosyl-phosphatidylinositol cross-reacting determinant epitope was only partially responsible for the cross-reactivity of the purified proteins, and antibodies appeared to recognize cross-reacting conformational epitopes from the various soluble VSGs. ELISA experiments were performed using infected bovine sera collected from cattle in a Venezuelan trypanosome-endemic area. In particular, soluble VSGs from two trypanosome isolates, TeGu-N/D1 and TeGu-TeracayTrino, were recognized by 93.38% and 73.55% of naturally T. vivax-infected bovine sera, respectively. However, approximately 70% of the sera samples did not recognize all seven purified proteins. Hence, the use of a combination of various VSGs for the diagnosis of animal trypanosomosis is recommended.
机译:唾液锥虫从大量VSG基因库中仅在其细胞表面顺序表达一种变体表面糖蛋白(VSG)。七个低温保存的动物锥虫分离株,分别称为TeAp-ElFrio01,TEVA1(或TeAp-N / D1),TeGu-N / D1,TeAp-Mantecal01,TeGu-TerecayTrino,TeGu-Terecay03和TeGu-Terecay323,已从不同宿主中分离出来使用成年白化病大鼠扩大了在委内瑞拉几个地理区域中确定的数量。十二烷基硫酸钠-聚丙烯酰胺凝胶电渗法纯化了感染初期表达的主要VSG的可溶性形式,并与分子量为48-67kDa的伴刀豆球蛋白A结合蛋白相对应,pI值在6.1至7.5之间。所有纯化的可溶性VSG的生化特征表明,它们是天然形式的二聚体,代表不同的基因产物。对这些蛋白质中的一些进行测序可得到与埃氏锥虫(Trypanosoma)(Trypanozoon)和伊氏锥虫(Trypanozoma)(Trypanozoon)的VSG同源的肽,并确定它们很可能是同源重组产生的花叶。蛋白质印迹分析表明,所有纯化的VSG都是交叉反应抗原,这些血清被感染埃文氏锥虫或锥虫(Dutonella)间日疟原虫的动物的血清识别。 VSG糖基磷脂酰肌醇交叉反应决定簇表位仅部分负责纯化蛋白的交叉反应,并且抗体似乎可以识别来自各种可溶性VSG的交叉反应构象表位。 ELISA实验是使用从委内瑞拉锥虫流行区的牛中收集的牛感染血清进行的。特别是,来自两种锥虫分离物TeGu-N / D1和TeGu-TeracayTrino的可溶性VSGs分别被天然间日疟原虫感染的牛血清的93.38%和73.55%识别。但是,大约70%的血清样品不能识别所有七个纯化的蛋白质。因此,建议将各种VSG组合使用以诊断动物锥虫病。

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