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Life-cycle and growth-phase-dependent regulation of the ubiquitin genes of Trypanosoma cruzi.

机译:克鲁氏锥虫泛素基因的生命周期和生长阶段依赖性调节。

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BACKGROUND: Trypanosoma cruzi, the causative agent of Chagas disease, exhibits a complex life cycle that is accompanied by the stage-specific gene expression. At the molecular level, very little is known about gene regulation in trypanosomes. Complex gene organizations coupled with polycistronic transcription units make the analysis of regulated gene expression difficult in trypanosomes. The ubiquitin genes of T. cruzi are a good example of this complexity. They are organized as a single cluster containing five ubiquitin fusion (FUS) and five polyubiquitin (PUB) genes that are polycistronically transcribed but expressed differently in response to developmental and environmental changes. METHODS: Gene replacements were used to study FUS and PUB gene expression at different stages of growth and at different points in the life cycle of T. cruzi. RESULTS: Based on the levels of reporter gene expression, it was determined that FUS1 expression was downregulated as the parasites approached stationary phase, whereas PUB12.5 polyubiquitin gene expression increased. Conversely, FUS1 expression increases when epimastigotes and amastigotes differentiate into trypomastigotes, whereas the expression of PUB12.5 decreases when epimastigotes differentiate into amastigotes and trypomastigotes. CONCLUSIONS: Although the level of CAT activity in logarithmic growing epimastigotes is six- to seven-fold higher when the gene was expressed from the FUS1 locus than when expressed from the PUB12.5 locus, the rate of transcription from the two loci was the same implying that post-transcriptional mechanisms play a dominant role in the regulation of gene expression.
机译:背景:恰加斯氏锥虫是恰加斯氏病的病原体,表现出复杂的生命周期,并伴有阶段特异性基因表达。在分子水平上,对锥虫基因调控的了解很少。复杂的基因组织加上多顺反子转录单位,使得锥虫体内难以调节基因的表达。 T. cruzi的泛素基因就是这种复杂性的一个很好的例子。它们被组织成一个单一簇,包含五个泛素融合(FUS)和五个聚泛素(PUB)基因,这些基因是多顺反子转录的,但随着发育和环境变化而表达不同。方法:使用基因替代研究F.和PUB基因在克鲁维氏锥虫生长的不同阶段和生命周期中不同点的表达。结果:根据报告基因的表达水平,可以确定随着寄生虫接近固定相而FUS1表达下调,而PUB12.5多聚泛素基因表达增加。相反,当前鞭毛体和拟鞭毛体分化为拟鞭毛体时,FUS1的表达增加,而当后鞭毛体分化为拟南体鞭毛体和锥结体时,PUB12.5的表达降低。结论:尽管从对数生长的近鞭毛象中的CAT活性水平从FUS1基因座表达的基因比从PUB12.5基因座表达的基因高六到七倍,但两个基因座的转录率是相同的暗示转录后机制在基因表达的调节中起主要作用。

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