School of Life Sciences, University of Dundee, Dow Street, Dundee DD1 5EH, United Kingdom.
Institute of Infection, Immunity, and Inflammation, University of Glasgow, Glasgow, United Kingdom.
PLoS Negl Trop Dis. 2020 Jul 9;14(7):e0008458. doi: 10.1371/journal.pntd.0008458. eCollection 2020 Jul.
Defining mode of action is vital for both developing new drugs and predicting potential resistance mechanisms. Sensitivity of African trypanosomes to pentamidine and melarsoprol is predominantly mediated by aquaglyceroporin 2 (TbAQP2), a channel associated with water/glycerol transport. TbAQP2 is expressed at the flagellar pocket membrane and chimerisation with TbAQP3 renders parasites resistant to both drugs. Two models for how TbAQP2 mediates pentamidine sensitivity have emerged; that TbAQP2 mediates pentamidine translocation across the plasma membrane or via binding to TbAQP2, with subsequent endocytosis and presumably transport across the endosomal/lysosomal membrane, but as trafficking and regulation of TbAQPs is uncharacterised this remains unresolved. We demonstrate that TbAQP2 is organised as a high order complex, is ubiquitylated and is transported to the lysosome. Unexpectedly, mutation of potential ubiquitin conjugation sites, i.e. cytoplasmic-oriented lysine residues, reduced folding and tetramerization efficiency and triggered ER retention. Moreover, TbAQP2/TbAQP3 chimerisation, as observed in pentamidine-resistant parasites, also leads to impaired oligomerisation, mislocalisation and increased turnover. These data suggest that TbAQP2 stability is highly sensitive to mutation and that instability contributes towards the emergence of drug resistance.
确定作用模式对于开发新药物和预测潜在的耐药机制至关重要。非洲锥虫对戊烷脒和喷他脒的敏感性主要由水甘油通道蛋白 2(TbAQP2)介导,该通道与水/甘油转运有关。TbAQP2 表达在鞭毛囊中膜上,与 TbAQP3 嵌合可使寄生虫对这两种药物产生耐药性。目前已经出现了两种关于 TbAQP2 介导戊烷脒敏感性的模型;一种是 TbAQP2 介导戊烷脒穿过质膜的转运,另一种是 TbAQP2 与戊烷脒结合,随后内吞并可能穿过内体/溶酶体膜转运,但由于 TbAQPs 的运输和调节尚未阐明,这个问题仍未解决。我们证明 TbAQP2 是一个高有序的复合物,被泛素化,并被转运到溶酶体。出乎意料的是,突变潜在的泛素结合位点,即细胞质定向赖氨酸残基,降低了折叠和四聚体化效率,并触发了内质网滞留。此外,如在戊烷脒耐药寄生虫中观察到的那样,TbAQP2/TbAQP3 嵌合也导致寡聚化、定位错误和周转率增加。这些数据表明,TbAQP2 的稳定性对突变非常敏感,不稳定性导致耐药性的出现。