锥虫基因表达的控制。

L. Vanhamme, E. Pays
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引用次数: 294

摘要

锥虫是主要寄生虫病的原生动物病原体,如南美洲的恰加斯病以及非洲人类的昏睡病和牛的那迦纳病。它们通过特定的昆虫媒介传播给哺乳动物宿主。它们的生命周期由一系列分化和生长阶段组成,需要调节基因表达以适应不断变化的细胞外环境。这种阶段特异性表达的典型是布鲁氏锥虫的主要表面抗原,原环素在原环(昆虫)形式和变异表面糖蛋白(VSG)在血流(哺乳动物)形式。在锥虫中,基因表达的调控主要在转录后水平受到影响,因为大多数基因的初级转录发生在长多顺反子单元中,并且是组成的。转录本在基因间聚嘧啶束的影响下通过转剪接和聚腺苷化进行加工。这些事件显示出一些发展规律。mRNA的非翻译序列似乎通过mRNA丰度的调节,在个体基因表达的阶段特异性控制中发挥着突出作用。VSG和顺环素转录单位表现出特殊的特征,可能与需要高水平表达有关。驱动这些单位表达的启动子和RNA聚合酶类似于核糖体基因。它们的互斥表达是通过在几个水平上操作的控制来确保的,包括RNA延伸。血液中的抗原变异是通过DNA重排或端粒VSG基因表达位点的替代激活来实现的。最近的发现,如端粒DNA中新核苷酸的存在和VSG基因点突变的产生,为抗原变异的机制和后果提供了新的线索。
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Control of gene expression in trypanosomes.
Trypanosomes are protozoan agents of major parasitic diseases such as Chagas' disease in South America and sleeping sickness of humans and nagana disease of cattle in Africa. They are transmitted to mammalian hosts by specific insect vectors. Their life cycle consists of a succession of differentiation and growth phases requiring regulated gene expression to adapt to the changing extracellular environment. Typical of such stage-specific expression is that of the major surface antigens of Trypanosoma brucei, procyclin in the procyclic (insect) form and the variant surface glycoprotein (VSG) in the bloodstream (mammalian) form. In trypanosomes, the regulation of gene expression is effected mainly at posttranscriptional levels, since primary transcription of most of the genes occurs in long polycistronic units and is constitutive. The transcripts are processed by transsplicing and polyadenylation under the influence of intergenic polypyrimidine tracts. These events show some developmental regulation. Untranslated sequences of the mRNAs seem to play a prominent role in the stage-specific control of individual gene expression, through a modulation of mRNA abundance. The VSG and procyclin transcription units exhibit particular features that are probably related to the need for a high level of expression. The promoters and RNA polymerase driving the expression of these units resemble those of the ribosomal genes. Their mutually exclusive expression is ensured by controls operating at several levels, including RNA elongation. Antigenic variation in the bloodstream is achieved through DNA rearrangements or alternative activation of the telomeric VSG gene expression sites. Recent discoveries, such as the existence of a novel nucleotide in telomeric DNA and the generation of point mutations in VSG genes, have shed new light on the mechanisms and consequences of antigenic variation.
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