Gerrits Herlinde, Mussmann Rainer, Bitter Wilbert, Kieft Rudo, Borst Piet
The Netherlands Cancer Institute, Division of Molecular Biology and Center for Biomedical Genetics, Plesmanlaan 121, 1066 CX Amsterdam, The Netherlands.
Mol Biochem Parasitol. 2002 Feb;119(2):237-47. doi: 10.1016/s0166-6851(01)00417-0.
Trypanosoma brucei escapes destruction by the host immune system by regularly replacing its Variant Surface Glycoprotein (VSG) coat. The VSG is expressed in a VSG expression site, together with expression site associated gene (ESAG) 6 and 7, encoding the heterodimeric transferrin receptor (Tf-R). There are around 20 VSG expression sites, and trypanosomes can change the site that is active. Since ESAG6 and 7 in different expression sites differ somewhat in sequence, expression site switching results in the production of a slightly different Tf-R. We have studied the physiological relevance of Tf-R variation for the survival of T. brucei in mammalian sera. Trypanosomes with an active 221 expression site, encoding a Tf-R with a very low affinity for canine Tf (Kd>1 microM), were cultured in canine serum based medium. This resulted in selection of trypanosomes that had switched to the VO2, the 223 or the bR-2 expression site, each encoding a Tf-R with higher affinity for canine Tf than the 221 site Tf-R. Adding bovine Tf to the medium could prevent the switch, indicating that the low uptake of Tf provided the selection against 221 trypanosomes. Horse serum based medium also induced switching to the VO2 expression site, but this was not prevented by bovine Tf. In the presence of physiological concentrations of anti-Tf-R antibody, only a high-affinity Tf allowed the growth of 221 Tf-R expressing trypanosomes. Our results suggest that a high-affinity Tf-R not only ensures efficient Tf uptake, but is also required to allow sufficient iron uptake by the trypanosome in the presence of anti-Tf-R antibodies.
布氏锥虫通过定期更换其可变表面糖蛋白(VSG)外衣来逃避宿主免疫系统的破坏。VSG在一个VSG表达位点表达,同时还有表达位点相关基因(ESAG)6和7,它们编码异二聚体转铁蛋白受体(Tf-R)。大约有20个VSG表达位点,锥虫可以改变活跃的位点。由于不同表达位点的ESAG6和7在序列上略有不同,表达位点的切换会导致产生略有不同的Tf-R。我们研究了Tf-R变异对布氏锥虫在哺乳动物血清中存活的生理相关性。将具有活跃的221表达位点、编码对犬转铁蛋白亲和力极低(Kd>1 microM)的Tf-R的锥虫培养在基于犬血清的培养基中。这导致选择了已切换到VO2、223或bR-2表达位点的锥虫,每个位点编码的Tf-R对犬转铁蛋白的亲和力都高于221位点的Tf-R。向培养基中添加牛转铁蛋白可以阻止这种切换,表明转铁蛋白摄取量低为针对221锥虫的选择提供了条件。基于马血清的培养基也诱导切换到VO2表达位点,但这不能被牛转铁蛋白阻止。在存在生理浓度的抗Tf-R抗体的情况下,只有高亲和力的转铁蛋白才能使表达221 Tf-R的锥虫生长。我们的结果表明,高亲和力的Tf-R不仅能确保有效的转铁蛋白摄取,而且在存在抗Tf-R抗体的情况下,也是锥虫摄取足够铁所必需的。