Ridewood Sophie, Ooi Cher-Pheng, Hall Belinda, Trenaman Anna, Wand Nadina Vasileva, Sioutas Georgios, Scherwitzl Iris, Rudenko Gloria
Department of Life Sciences, Sir Alexander Fleming Building, Imperial College London, South Kensington, London SW7 2AZ, UK.
Mol Microbiol. 2017 Nov;106(4):614-634. doi: 10.1111/mmi.13838. Epub 2017 Oct 11.
Trypanosoma brucei faces relentless immune attack in the mammalian bloodstream, where it is protected by an essential coat of Variant Surface Glycoprotein (VSG) comprising ∼10% total protein. The active VSG gene is in a Pol I-transcribed telomeric expression site (ES). We investigated factors mediating these extremely high levels of VSG expression by inserting ectopic VSG117 into VSG221 expressing T. brucei. Mutational analysis of the ectopic VSG 3'UTR demonstrated the essentiality of a conserved 16-mer for mRNA stability. Expressing ectopic VSG117 from different genomic locations showed that functional VSG levels could be produced from a gene 60 kb upstream of its normal telomeric location. High, but very heterogeneous levels of VSG117 were obtained from the Pol I-transcribed rDNA. Blocking VSG synthesis normally triggers a precise precytokinesis cell-cycle checkpoint. VSG117 expression from the rDNA was not adequate for functional complementation, and the stalled cells arrested prior to cytokinesis. However, VSG levels were not consistently low enough to trigger a characteristic 'VSG synthesis block' cell-cycle checkpoint, as some cells reinitiated S phase. This demonstrates the essentiality of a Pol I-transcribed ES, as well as conserved VSG 3'UTR 16-mer sequences for the generation of functional levels of VSG expression in bloodstream form T. brucei.
布氏锥虫在哺乳动物血液中面临着无情的免疫攻击,在那里它受到一层至关重要的变异表面糖蛋白(VSG)外壳的保护,该外壳占总蛋白的10%左右。活跃的VSG基因位于由RNA聚合酶I转录的端粒表达位点(ES)。我们通过将异位VSG117插入表达VSG221的布氏锥虫中,研究了介导这些极高水平VSG表达的因素。对异位VSG 3'非翻译区的突变分析表明,一个保守的16聚体对于mRNA稳定性至关重要。从不同基因组位置表达异位VSG117表明,在其正常端粒位置上游60 kb处的一个基因可以产生功能性的VSG水平。从由RNA聚合酶I转录的核糖体DNA中获得了高水平但非常不均一的VSG117。阻断VSG合成通常会触发一个精确的胞质分裂前细胞周期检查点。从核糖体DNA表达的VSG117不足以实现功能互补,停滞的细胞在胞质分裂之前就停滞了。然而,VSG水平并没有持续低到足以触发特征性的“VSG合成阻断”细胞周期检查点,因为一些细胞重新进入了S期。这证明了由RNA聚合酶I转录的ES以及保守的VSG 3'非翻译区16聚体序列对于在血流型布氏锥虫中产生功能性水平的VSG表达至关重要。