Wei Guiying, Zhao Yuemeng, Zhang Qingfeng, Pan Weiqing
Institute for Infectious Diseases and Vaccine Development, Tongji University School of Medicine, 1239 Siping Road, Shanghai 200092, China.
Institute for Infectious Diseases and Vaccine Development, Tongji University School of Medicine, 1239 Siping Road, Shanghai 200092, China.
Infect Genet Evol. 2015 Dec;36:490-499. doi: 10.1016/j.meegid.2015.08.023. Epub 2015 Aug 20.
As the primary virulence factor of falciparum malaria, var genes harboring mutually exclusive expression pattern lead to antigenic variation and immune evasion of this pathogen in human host. Although various mechanisms contribute to silence of var genes, little is known of transcriptional activation pathways of a single var gene and maintenance of its active state with other silent var loci. Here, we report a monoallelic expression pattern of the non-coding GC-elements flanking chromosomal internal var genes, and transcript from the active one was required for activation of the var gene in the same array. Meanwhile, GFP reporter assays revealed a repressive effect on the adjacent gene induced by DNA motifs of the insulator-like GC-element, which was linked to heterochromatin subnuclear localization. Taken together, these data for the first time provide experimental evidence of the dual cis- and trans-acting regulatory functions of the GC-elements in both silence and activation of var genes, which would advance our understanding of the complex regulatory network of the virulence gene family in P. falciparum.
作为恶性疟原虫的主要毒力因子,具有相互排斥表达模式的var基因导致该病原体在人类宿主中发生抗原变异和免疫逃逸。尽管多种机制导致var基因沉默,但对于单个var基因的转录激活途径及其与其他沉默var基因座的活性状态维持知之甚少。在此,我们报道了染色体内部var基因侧翼非编码GC元件的单等位基因表达模式,并且同一阵列中var基因的激活需要来自活跃GC元件的转录本。同时,绿色荧光蛋白报告基因检测揭示了绝缘子样GC元件的DNA基序对相邻基因的抑制作用,这与异染色质亚核定位有关。综上所述,这些数据首次提供了GC元件在var基因沉默和激活中顺式和反式双重调控功能的实验证据,这将推动我们对恶性疟原虫毒力基因家族复杂调控网络的理解。