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布氏锥虫变异表面糖蛋白基因表达位点的结构

The architecture of variant surface glycoprotein gene expression sites in Trypanosoma brucei.

作者信息

Berriman Matthew, Hall Neil, Sheader Karen, Bringaud Frédéric, Tiwari Bela, Isobe Tomoko, Bowman Sharen, Corton Craig, Clark Louise, Cross George A M, Hoek Maarten, Zanders Tyiesha, Berberof Magali, Borst Piet, Rudenko Gloria

机构信息

The Wellcome Trust Sanger Institute, Hinxton CB10 1SA, UK.

出版信息

Mol Biochem Parasitol. 2002 Jul;122(2):131-40. doi: 10.1016/s0166-6851(02)00092-0.

Abstract

Trypanosoma brucei evades the immune system by switching between Variant Surface Glycoprotein (VSG) genes. The active VSG gene is transcribed in one of approximately 20 telomeric expression sites (ESs). It has been postulated that ES polymorphism plays a role in host adaptation. To gain more insight into ES architecture, we have determined the complete sequence of Bacterial Artificial Chromosomes (BACs) containing DNA from three ESs and their flanking regions. There was variation in the order and number of ES-associated genes (ESAGs). ESAGs 6 and 7, encoding transferrin receptor subunits, are the only ESAGs with functional copies in every ES that has been sequenced until now. A BAC clone containing the VO2 ES sequences comprised approximately half of a 330 kb 'intermediate' chromosome. The extensive similarity between this intermediate chromosome and the left telomere of T. brucei 927 chromosome I, suggests that this previously uncharacterised intermediate size class of chromosomes could have arisen from breakage of megabase chromosomes. Unexpected conservation of sequences, including pseudogenes, indicates that the multiple ESs could have arisen through a relatively recent amplification of a single ES.

摘要

布氏锥虫通过在可变表面糖蛋白(VSG)基因之间切换来逃避免疫系统。活跃的VSG基因在大约20个端粒表达位点(ES)之一中进行转录。据推测,ES多态性在宿主适应性中发挥作用。为了更深入了解ES结构,我们确定了包含来自三个ES及其侧翼区域DNA的细菌人工染色体(BAC)的完整序列。ES相关基因(ESAG)的顺序和数量存在差异。编码转铁蛋白受体亚基的ESAG 6和7是迄今为止在每个已测序的ES中都具有功能拷贝的仅有的ESAG。一个包含VO2 ES序列的BAC克隆约占一条330 kb“中间”染色体的一半。这条中间染色体与布氏锥虫927染色体I的左端粒之间存在广泛的相似性,这表明这种以前未被表征的中间大小类别的染色体可能是由兆碱基染色体断裂产生的。包括假基因在内的序列意外保守,表明多个ES可能是通过单个ES的相对近期扩增产生的。

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