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Histone H1 Plays a Role in Heterochromatin Formation and VSG Expression Site Silencing in Trypanosoma brucei

机译:组蛋白H1在布鲁氏锥虫异染色质形成和VSG表达位点沉默中发挥作用

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摘要

The African sleeping sickness parasite Trypanosoma brucei evades the host immune system through antigenic variation of its variant surface glycoprotein (VSG) coat. Although the T. brucei genome contains ∼1500 VSGs, only one VSG is expressed at a time from one of about 15 subtelomeric VSG expression sites (ESs). For antigenic variation to work, not only must the vast VSG repertoire be kept silent in a genome that is mainly constitutively transcribed, but the frequency of VSG switching must be strictly controlled. Recently it has become clear that chromatin plays a key role in silencing inactive ESs, thereby ensuring monoallelic expression of VSG. We investigated the role of the linker histone H1 in chromatin organization and ES regulation in T. brucei. T. brucei histone H1 proteins have a different domain structure to H1 proteins in higher eukaryotes. However, we show that they play a key role in the maintenance of higher order chromatin structure in bloodstream form T. brucei as visualised by electron microscopy. In addition, depletion of histone H1 results in chromatin becoming generally more accessible to endonucleases in bloodstream but not in insect form T. brucei. The effect on chromatin following H1 knock-down in bloodstream form T. brucei is particularly evident at transcriptionally silent ES promoters, leading to 6–8 fold derepression of these promoters. T. brucei histone H1 therefore appears to be important for the maintenance of repressed chromatin in bloodstream form T. brucei. In particular H1 plays a role in downregulating silent ESs, arguing that H1-mediated chromatin functions in antigenic variation in T. brucei.
机译:非洲昏睡病寄生虫布鲁氏锥虫通过其变异的表面糖蛋白(VSG)外壳的抗原变异逃避了宿主的免疫系统。尽管布鲁氏杆菌的基因组包含约1500个VSG,但从约15个亚端粒VSG表达位点(ESs)之一仅一次表达一个VSG。为了使抗原变异起作用,不仅必须在主要组成性转录的基因组中使广大的VSG曲目保持沉默,而且必须严格控制VSG转换的频率。最近,已经清楚的是,染色质在沉默无活性的ES中起着关键作用,从而确保了VSG的单等位基因表达。我们调查了在T. brucei中染色质组织和ES调控中接头组蛋白H1的作用。布氏锥虫组蛋白H1蛋白与高级真核生物中的H1蛋白具有不同的域结构。但是,我们显示,它们在维持T. brucei血流形式的高阶染色质结构(通过电子显微镜观察)中起着关键作用。此外,组蛋白H1的耗尽会导致染色质通常变得更容易进入血流中的核酸内切酶,但不能变成昆虫形式的布鲁氏杆菌。 H1基因敲低布鲁氏杆菌后在H1敲低后对染色质的影响在转录沉默ES启动子上尤为明显,导致这些启动子的6-8倍抑制。因此,布鲁氏球菌组蛋白H1对于维持布鲁氏球菌血流中的染色质的抑制很重要。特别地,H1在下调沉默的ESs中起着作用,认为H1介导的染色质在布鲁氏杆菌的抗原变异中起作用。

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