非洲锥虫抗原变异机制。

Behring Institute Mitteilungen Pub Date : 1997-03-01
P Borst, G Rudenko, P A Blundell, F van Leeuwen, M A Cross, R McCulloch, H Gerrits, I M Chaves
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引用次数: 0

摘要

非洲锥虫可以通过锥虫表面外壳的抗原变异逃避其哺乳动物宿主免疫系统的破坏。这种被毛主要由一种蛋白质组成,即变异表面糖蛋白(VSG)。VSGs基因与至少8个表达位点相关基因(esag)一起在一个多顺反子端粒表达位点表达。锥虫可以通过用一个不同的基因替换活跃表达位点的VSG基因,或者激活另一个表达位点,同时沉默先前活跃的VSG基因。在这里,我们回顾了我们目前对布鲁氏锥虫抗原变异的认识。我们关注四个问题:锥虫如何从一个VSG基因表达位点切换到另一个?新的碱基J在沉默表达位点中的作用是什么?两个ESAG基因编码的异二聚体转铁蛋白受体抗原变异的功能意义是什么?为什么锥虫有多个表达位点?
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Mechanisms of antigenic variation in African trypanosomes.

African trypanosomes can escape destruction by the immune system of their mammalian host by antigenic variation of the trypanosome surface coat. This coat is mainly composed of a single protein species, the Variant Surface Glycoprotein or VSG. The genes for VSGs are expressed in a polycistronic telomeric expression site together with at least eight expression site-associated genes (ESAGs). Trypanosomes may switch coat either by replacing the VSG gene in the active expression site by a different one, or by activating another expression site with concomitant silencing of the previously active one. Here we review our present knowledge of antigenic variation in Trypanosome brucei. We focus on four questions: How do trypanosomes switch from one VSG gene expression site to another one? What is the role of the novel base J in silencing expression sites? What is the functional significance of the antigenic variation of the heterodimeric transferrin receptor encoded by two ESAG genes? Why do trypanosomes have multiple expression sites at all?

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