Buck G A, Longacre S, Raibaud A, Hibner U, Giroud C, Baltz T, Baltz D, Eisen H
Nature. 1984;307(5951):563-6. doi: 10.1038/307563a0.
African trypanosomes evade clearance in immune-competent hosts by periodically replacing their major surface glycoprotein with an antigenically different glycoprotein. Expression of many of these variant surface glycoproteins (VSGs) is associated with the duplication and transposition of silent basic copy genes (BCs) into unlinked genomic expression sites. The new expression-linked VSG gene copies (ELCs) are oriented with their 3' ends proximal to chromosome telomeres. Other VSG genes are activated without the production of an ELC. The 3' ends of these VSG genes are near chromosome telomeres both when they are active and when they are inactive. Recently, we have shown that activation of the VSG-1 gene in the BoTaR (Bordeaux trypanozoon antigen repertoire) serodeme of Trypanosoma equiperdum involves the duplication and transposition of a telomeric BC gene into one of at least three unlinked telomeric sites. Here we show that the VSG-1 ELC is inactivated but not eliminated in some antigenic variants derived from a VSG-1 expressor. In addition, a subsequent variant that again expresses VSG-1 has not reactivated the residual VSG-1 ELC (R-ELC), but instead contains a new, active VSG-1 ELC in an unlinked telomeric site. These results show that the simple presence of an ELC in a potential expression site is not sufficient for its expression.
非洲锥虫通过周期性地用抗原性不同的糖蛋白替换其主要表面糖蛋白,在免疫健全的宿主体内逃避清除。许多这些可变表面糖蛋白(VSG)的表达与沉默基本拷贝基因(BC)的复制和转座到不连锁的基因组表达位点有关。新的与表达相关的VSG基因拷贝(ELC)以其3'端靠近染色体端粒的方向排列。其他VSG基因在不产生ELC的情况下被激活。这些VSG基因的3'端在活跃和不活跃时都靠近染色体端粒。最近,我们已经表明,马媾疫锥虫的博塔R(波尔多锥虫抗原库)血清型中VSG-1基因的激活涉及一个端粒BC基因的复制和转座到至少三个不连锁的端粒位点之一。在这里,我们表明,在一些源自VSG-1表达体的抗原变异体中,VSG-1 ELC被灭活但未被消除。此外,随后再次表达VSG-1的变异体没有重新激活残留的VSG-1 ELC(R-ELC),而是在一个不连锁的端粒位点含有一个新的、活跃的VSG-1 ELC。这些结果表明,在潜在表达位点简单存在一个ELC不足以使其表达。