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Ex Vivo and In Vitro Identification of a Consensus Promoter for VSG Genes Expressed by Metacyclic-Stage Trypanosomes in the Tsetse Fly

机译:采采蝇中由亚环阶段锥虫表达的VSG基因的共识启动子的体内和体外鉴定。

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The trypanosome variant surface glycoprotein (VSG) is first expressed during differentiation to the infective, metacyclic population in tsetse fly salivary glands. Unlike the VSG genes expressed by bloodstream form trypanosomes, metacyclic VSGs (MVSGs) have their own promoters. The scarcity of metacyclic cells has meant that only indirect approaches have been used to study these promoters, and not even their identities have been agreed on. Here, we isolated trypanosomes by dissection from salivary glands and used an approach involving 5′ rapid amplification of cDNA ends to identify the transcription start site of three MVSGs. This shows that the authentic start site is that proposed for the MVAT series of MVSGs (K. S. Kim and J. E. Donelson, J. Biol. Chem. >272:24637-24645, 1997). In the more readily accessible procyclic trypanosome stage, where MVSGs are normally silent, we used reporter gene assays and linker scanning analysis to confirm that the 67 bp upstream of the start site is a promoter. This is confirmed further by accurate initiation in a homologous in vitro transcription system. We show also that MVSG promoters become derepressed when tested outwith their endogenous, subtelomeric loci. The MVSG promoters are only loosely conserved with bloodstream VSG promoters, and our detailed analysis of the 1.63 MVSG promoter reveals that its activity depends on the start site itself and sequences 26 to 49 bp and 56 to 60 bp upstream. These are longer than those necessary for the bloodstream promoter.
机译:锥虫变体表面糖蛋白(VSG)首先在采采蝇唾液腺中向感染性,代谢环族分化期间表达。与血流由锥虫表达的 VSG 基因不同,元环 VSG s( MVSG s)具有自己的启动子。元环细胞的稀缺性意味着仅使用间接方法研究了这些启动子,甚至尚未就其身份达成共识。在这里,我们通过解剖从唾液腺中分离出锥虫,并使用一种涉及5'快速扩增cDNA末端的方法来鉴定三个 MVSG 的转录起始位点。这表明真实的起始位点是针对 MVSG MVAT 系列提出的(KS Kim和JE Donelson,J. Biol。Chem。> 272:< / strong> 24637-24645,1997)。在通常容易沉默的 MVSG 的顺环锥虫阶段,我们使用了报告基因分析和接头扫描分析,以确认起始位点上游67 bp是启动子。通过在同源体外转录系统中的精确启动进一步证实了这一点。我们还显示, MVSG 启动子在与它们的内源性,亚端粒基因座一起测试时变得受到抑制。 MVSG 启动子仅与血流 VSG 启动子保守,我们对 1.63 MVSG 启动子的详细分析显示,其活性取决于启动子位点本身和上游26至49 bp和56至60 bp的序列。这些比血流启动器所需的时间更长。

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