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首页> 外文期刊>Eukaryotic cell >Targeting the Variable Surface of African Trypanosomes with Variant Surface Glycoprotein-Specific, Serum-Stable RNA Aptamers
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Targeting the Variable Surface of African Trypanosomes with Variant Surface Glycoprotein-Specific, Serum-Stable RNA Aptamers

机译:靶向具有可变表面糖蛋白特异性,血清稳定RNA适体的非洲锥虫的可变表面

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African trypanosomes cause sleeping sickness in humans and Nagana in cattle. The parasites multiply in the blood and escape the immune response of the infected host by antigenic variation. Antigenic variation is characterized by a periodic change of the parasite protein surface, which consists of a variant glycoprotein known as variant surface glycoprotein (VSG). Using a SELEX (systematic evolution of ligands by exponential enrichment) approach, we report the selection of small, serum-stable RNAs, so-called aptamers, that bind to VSGs with subnanomolar affinity. The RNAs are able to recognize different VSG variants and bind to the surface of live trypanosomes. Aptamers tethered to an antigenic side group are capable of directing antibodies to the surface of the parasite in vitro. In this manner, the RNAs might provide a new strategy for a therapeutic intervention to fight sleeping sickness.
机译:非洲锥虫会引起人类昏睡病,而牛会导致长g病。寄生虫在血液中繁殖,并通过抗原变异逃脱被感染宿主的免疫反应。抗原变异的特征在于寄生虫蛋白质表面的周期性变化,该寄生虫蛋白质表面由称为变异体表面糖蛋白(VSG)的变异糖蛋白组成。我们使用SELEX(通过指数富集的配体系统进化)方法报道了选择小的,血清稳定的RNA,即所谓的适体,它们以亚纳摩尔亲和力与VSG结合。 RNA能够识别不同的VSG变体并与活锥虫体表面结合。拴在抗原性侧基上的适体能够将抗体在体外定向到寄生虫的表面。以这种方式,RNA可能为对抗昏睡病的治疗干预提供新的策略。

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