Paturiaux-Hanocq F, Zitzmann N, Hanocq-Quertier J, Vanhamme L, Rolin S, Geuskens M, Ferguson M A, Pays E
Department of Molecular Biology, Free University of Brussels, 67, rue des Chevaux, B1640 Rhode Saint Genèse, Belgium.
Biochem J. 1997 Jun 15;324 ( Pt 3)(Pt 3):885-95. doi: 10.1042/bj3240885.
Procyclic forms of Trypanosoma brucei have been genetically modified to express the major metacyclic variant surface glycoprotein (VSG variant AnTat 11.17) of Trypanosoma gambiense. The VSG is expressed in an intact membrane-bound form that can be detected over the entire plasma membrane, together with procyclin, and as a series of lower-molecular-mass fragments that are mostly soluble degradation products. The presence of degraded VSG in the cells and the culture medium suggests that VSG is not efficiently processed and/or efficiently folded when expressed in procyclic cells. The level of procyclin expressed on the surface of these cells is slightly reduced, although there is no difference in procyclin mRNA levels. The intact membrane-bound form of the VSG is N-glycosylated with oligomannose structures and contains a glycosylphosphatidylinositol (GPI) membrane anchor that can be biosynthetically labelled with [3H]ethanolamine. The anchor is sensitive to mammalian GPI-specific phospholipase D but, like the anchor of procyclin, it is resistant to the action of bacterial phosphatidylinositol-specific phospholipase C. This pattern of phospholipase sensitivity suggests that the GPI anchor acquired by VSG when expressed in procyclics is acylated on the inositol ring and therefore resembles a procyclic procyclin-type anchor rather than a trypomastigote VSG-type anchor with respect to the lipid structure. The VSG expressed in procyclics was sensitive to the action of a mixture of sialidase, beta-galactosidase and beta-hexosaminidase, suggesting that the VSG GPI anchor also contains a sialylated polylactosamine side-chain modification similar to that described for procyclin. These results indicate that the nature of the protein expressed has little influence on the post-translational modifications performed in the secretory pathway of procyclic trypanosomes.
布氏锥虫的前循环型已通过基因改造来表达冈比亚锥虫的主要循环后期变异表面糖蛋白(VSG变异体AnTat 11.17)。VSG以完整的膜结合形式表达,在整个质膜上都能检测到,与前环素一起,还以一系列低分子量片段的形式存在,这些片段大多是可溶性降解产物。细胞和培养基中存在降解的VSG,这表明VSG在前循环细胞中表达时没有得到有效的加工和/或有效折叠。这些细胞表面表达的前环素水平略有降低,尽管前环素mRNA水平没有差异。VSG的完整膜结合形式用寡甘露糖结构进行N-糖基化,并且含有一个糖基磷脂酰肌醇(GPI)膜锚,该膜锚可以用[3H]乙醇胺进行生物合成标记。该锚对哺乳动物GPI特异性磷脂酶D敏感,但与前环素的锚一样,它对细菌磷脂酰肌醇特异性磷脂酶C的作用具有抗性。这种磷脂酶敏感性模式表明,VSG在前循环中表达时获得的GPI锚在肌醇环上被酰化,因此就脂质结构而言,类似于前循环前环素型锚,而不是锥鞭毛体VSG型锚。在前循环中表达的VSG对唾液酸酶、β-半乳糖苷酶和β-己糖胺酶的混合物的作用敏感,这表明VSG GPI锚还含有一个唾液酸化的聚乳糖胺侧链修饰,类似于前环素中描述的修饰。这些结果表明,所表达蛋白质的性质对前循环锥虫分泌途径中的翻译后修饰影响很小。