Navarro Miguel, Peñate Xenia, Landeira David
Instituto de Parasitología y Biomedicina López-Neyra, Consejo Superior de Investigaciones Científicas (Spanish National Research Council), Avda. del Conocimiento s/n, 18100 Granada, Spain.
Trends Microbiol. 2007 Jun;15(6):263-70. doi: 10.1016/j.tim.2007.04.004. Epub 2007 May 4.
The influence of nuclear architecture on the regulation of developmental gene expression has recently become evident in many organisms ranging from yeast to humans. During interphase, chromosomes and nuclear structures are in constant motion; therefore, correct temporal association is needed to meet the requirements of gene expression. Trypanosoma brucei is an excellent model system in which to analyze nuclear spatial implications in the regulation of gene expression because the two main surface-protein genes (procyclin and VSG) are transcribed by the highly compartmentalized RNA polymerase I and undergo distinct transcriptional activation or downregulation during developmental differentiation. Furthermore, the infective bloodstream form of the parasite undergoes antigenic variation, displaying sequentially different types of VSG by allelic exclusion. Here, we discuss recent advances in understanding the role of chromosomal nuclear positioning in the regulation of gene expression in T. brucei.
核结构对发育基因表达调控的影响最近在从酵母到人类的许多生物体中都变得明显。在间期,染色体和核结构处于不断运动中;因此,需要正确的时间关联来满足基因表达的要求。布氏锥虫是一个极好的模型系统,可用于分析基因表达调控中的核空间影响,因为两个主要的表面蛋白基因(前环素和VSG)由高度分隔的RNA聚合酶I转录,并在发育分化过程中经历不同的转录激活或下调。此外,寄生虫的感染性血流形式会发生抗原变异,通过等位基因排斥依次展示不同类型的VSG。在这里,我们讨论了在理解染色体核定位在布氏锥虫基因表达调控中的作用方面的最新进展。