Lee M G
Department of Pathology, New York University Medical Center, 550 First Avenue, New York, NY 10016, USA.
Nucleic Acids Res. 1998 Sep 1;26(17):4025-33. doi: 10.1093/nar/26.17.4025.
An increase in the transcriptional efficiency at elevated temperatures is a characteristic of transcription of heat shock protein (hsp) coding genes in most eukaryotes analyzed to date. The regulatory mechanism for hsp 70 genes expression in Trypanosoma brucei does not follow the conventional transcriptional induction mechanism. The hsp 70 locus of T.brucei appears in a permanently activated state, and transcriptional induction of hsp 70 genes by heat shock does not occur in this organism. Therefore, the differential expression of the hsp 70 genes in trypanosomes is, to a large extent, post-transcriptionally controlled. Mechanisms of post-transcriptional control of the hsp 70 gene expression were investigated. Procyclic trypanosomes were normally maintained at approximately 25 degreesC. Incubation of procyclic trypanosomes at 41 degreesC drastically reduced the steady state mRNA levels of many protein coding genes. In contrast, the expression of the hsp 70 genes is either maintained at a high level or is up-regulated. The hsp 70 intergenic region promoter together with its 3' splice acceptor sites and the 5' untranslated region (UTR) are not sufficient to maintain or up-regulate the mRNA level of a reporter gene upon heat shock. However, addition of the 3' UTR of hsp 70 genes to a reporter gene, driven by different promoters, maintained a high level expression of the mRNA during heat shock. These results suggested that the 3' UTR of the hsp 70 genes is primarily responsible for the maintenance of mRNA level during heat shock, while mRNA containing the 3' UTR from many other genes may be rapidly degraded by heat shock induced processes.
在大多数迄今分析过的真核生物中,高温下转录效率的提高是热休克蛋白(hsp)编码基因转录的一个特征。布氏锥虫中hsp 70基因表达的调控机制并不遵循传统的转录诱导机制。布氏锥虫的hsp 70基因座似乎处于永久激活状态,热休克并不会诱导该生物体中hsp 70基因的转录。因此,锥虫中hsp 70基因的差异表达在很大程度上是受转录后调控的。研究了hsp 70基因表达的转录后调控机制。前循环型锥虫通常维持在约25℃。将前循环型锥虫在41℃孵育会大幅降低许多蛋白质编码基因的稳态mRNA水平。相比之下,hsp 70基因的表达要么维持在高水平,要么上调。hsp 70基因间区域启动子及其3'剪接受体位点和5'非翻译区(UTR)不足以在热休克时维持或上调报告基因的mRNA水平。然而,将hsp 70基因的3'UTR添加到由不同启动子驱动的报告基因中,在热休克期间维持了mRNA的高水平表达。这些结果表明,hsp 70基因的3'UTR主要负责热休克期间mRNA水平的维持,而含有许多其他基因3'UTR的mRNA可能会因热休克诱导的过程而迅速降解。