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Metacyclic VSG expression site promoters are recognized by the same general transcription factor that is required for RNA polymerase I transcription of bloodstream expression sites

机译:metarocyclic VSG表达位点启动子被相同的一般转录因子所识别该转录因子与血流表达位点的RNA聚合酶I转录所必需的相同

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摘要

Infectious metacyclic Trypanosoma brucei cells develop in the salivary glands of tsetse flies. A critical aspect of the developmental program leading to acquisition of infectivity is the synthesis of a variant surface glycoprotein (VSG) coat. Metacyclic VSG genes are transcribed from a set of specialized VSG expression sites (ESs) that differ from bloodstream VSG ESs by being monocistronic, being significantly shorter, lacking long stretches of 70-bp repeats, and having distinct promoter sequences. Both metacyclic and bloodstream VSG ESs are transcribed by the multifunctional T. brucei RNA polymerase I (Pol I), however the factor that recognizes the divergent metacyclic VSG ES promoters and recruits Pol I during the development to infectious cells remains unknown. We used an in vitro assay to show that the promoters for both metacyclic and bloodstream VSG ESs are recognized by the same class I transcription factor A (CITFA). This general Pol I transcription initiation factor was previously shown to be essential for the transcription of bloodstream VSG genes, procyclin genes and rRNA genes, and was demonstrated to have distinct binding affinities for these three types of promoters. We now show that differences in the sequence of individual metacyclic VSG ESs promoters determine different affinities for CITFA.
机译:采采蝇的唾液腺中会产生感染性的环状马氏锥虫细胞。导致获得传染性的发展计划的关键方面是变异表面糖蛋白(VSG)外壳的合成。元环VSG基因是从一组专门的VSG表达位点(ES)转录而来的,这些位点与血流VSG ES的区别在于单顺反子,明显短,缺少70 bp的重复序列长且具有独特的启动子序列。多功能的布鲁氏菌RNA聚合酶I(Pol I)转录了代谢循环的和血液中的VSG ES,但是,尚不清楚在发育成感染性细胞的过程中识别不同的代谢环的VSG ES启动子并募集Pol I的因素。我们使用了体外测定法,以显示相同的I类转录因子A(CITFA)识别了元环和血流VSG ES的启动子。先前已证明这种通用的Pol I转录起始因子对于血流VSG基因,procyclin基因和rRNA基因的转录至关重要,并已证明对这三种启动子具有独特的结合亲和力。现在我们显示,单个元环VSG ESs启动子序列的差异决定了CITFA的不同亲和力。

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