Longacre S, Hibner U, Raibaud A, Eisen H, Baltz T, Giroud C, Baltz D
Mol Cell Biol. 1983 Mar;3(3):399-409. doi: 10.1128/mcb.3.3.399-409.1983.
African trypanosomes resist the immune response of their mammalian hosts by varying the surface glycoprotein which constitutes their antigenic identity. The molecular mechanism of this antigenic variation involves the successive activation of a series of genes which code for different variant surface glycoproteins (VSGs). We have studied the expression of two VSG genes (those of VSG-1 and VSG-28) in Trypanosoma equiperdum, and we report the following findings. (i) The expression of both VSG genes is associated with the duplication and transposition of corresponding basic copy genes. (ii) The duplicated transposed copy appears to be the expressed copy. (iii) Although there are multiple genes which cross-hybridize with the VSG-1 cDNA probe, only one of these appears to be used as a template for the expression-linked copy in four independent BoTat-1 clones. (iv) Analysis of the genomic environments of the expressed VSG-1 genes from each of four independently derived BoTat-1 trypanosome clones revealed that there are at least three different sites into which the expression-linked copy can be inserted.
非洲锥虫通过改变构成其抗原特性的表面糖蛋白来抵抗哺乳动物宿主的免疫反应。这种抗原变异的分子机制涉及一系列编码不同变异表面糖蛋白(VSG)的基因的相继激活。我们研究了马媾疫锥虫中两个VSG基因(VSG-1和VSG-28的基因)的表达,并报告以下发现。(i)两个VSG基因的表达都与相应基本拷贝基因的复制和转位有关。(ii)复制转位的拷贝似乎是表达拷贝。(iii)虽然有多个基因与VSG-1 cDNA探针交叉杂交,但在四个独立的BoTat-1克隆中,这些基因中只有一个似乎被用作表达相关拷贝的模板。(iv)对四个独立衍生的BoTat-1锥虫克隆中每个克隆的表达型VSG-1基因的基因组环境分析表明,表达相关拷贝可插入至少三个不同的位点。