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Consequences of Telomere Shortening at an Active VSG Expression Site in Telomerase-Deficient Trypanosoma brucei

机译:端粒酶缺陷型布鲁氏锥虫中主动VSG表达位点端粒缩短的后果。

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摘要

Trypanosoma brucei evades the host immune response by sequential expression of a large family of variant surface glycoproteins (VSG) from one of ∼20 subtelomeric expression sites (ES). VSG transcription is monoallelic, and little is known about the regulation of antigenic switching. To explore whether telomere length could affect antigenic switching, we created a telomerase-deficient cell line, in which telomeres shortened at a rate of 3 to 6 bp at each cell division. Upon reaching a critical length, short silent ES telomeres were stabilized by a telomerase-independent mechanism. The active ES telomere progressively shortened and frequently broke. Upon reaching a critical length, the short active ES telomere stabilized, but the transcribed VSG was gradually lost from the population and replaced by a new VSG through duplicative gene conversion. We propose a model in which subtelomeric-break-induced replication-mediated repair at a short ES telomere leads to duplicative gene conversion and expression of a new VSG.
机译:布氏锥虫通过从大约20个亚端粒表达位点(ES)中的一个顺序表达一大批变异表面糖蛋白(VSG)逃避宿主的免疫反应。 VSG转录是单等位基因,对抗原转换的调控知之甚少。为了探讨端粒长度是否会影响抗原转换,我们创建了端粒酶缺陷型细胞系,其中端粒在每个细胞分裂中以3到6 bp的速率缩短。达到临界长度后,短的沉默ES端粒通过端粒酶非依赖性机制得以稳定。活跃的ES端粒逐渐缩短并经常断裂。达到临界长度后,短的活性ES端粒稳定下来,但转录的VSG逐渐从种群中丢失,并通过重复的基因转换被新的VSG取代。我们提出了一个模型,其中亚端粒断裂诱导的复制介导的短ES端粒修复导致重复的基因转化和新VSG的表达。

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