Department of Biological Sciences, Graduate School of Science, University of Tokyo, 2-11-16 Yayoi, Bunkyo-ku, Tokyo, 113-0032, Japan.
Precursory Research for Embryonic Science and Technology (PRESTO), Japan Science and Technology Agency, 4-1-8 Honcho, Kawaguchi, Saitama, 332-0012, Japan.
Nat Plants. 2017 Oct;3(10):825-832. doi: 10.1038/s41477-017-0022-8. Epub 2017 Oct 2.
The triose-phosphate/phosphate translocator (TPT) catalyses the strict 1:1 exchange of triose-phosphate, 3-phosphoglycerate and inorganic phosphate across the chloroplast envelope, and plays crucial roles in photosynthesis. Despite rigorous study for more than 40 years, the molecular mechanism of TPT is poorly understood because of the lack of structural information. Here we report crystal structures of TPT bound to two different substrates, 3-phosphoglycerate and inorganic phosphate, in occluded conformations. The structures reveal that TPT adopts a 10-transmembrane drug/metabolite transporter fold. Both substrates are bound within the same central pocket, where conserved lysine, arginine and tyrosine residues recognize the shared phosphate group. A structural comparison with the outward-open conformation of the bacterial drug/metabolite transporter suggests a rocker-switch motion of helix bundles, and molecular dynamics simulations support a model in which this rocker-switch motion is tightly coupled to the substrate binding, to ensure strict 1:1 exchange. These results reveal the unique mechanism of sugar phosphate/phosphate exchange by TPT.
三磷酸/磷酸转位酶(TPT)催化叶绿体被膜上三磷酸丙糖、3-磷酸甘油酸和无机磷酸的严格 1:1 交换,在光合作用中发挥着关键作用。尽管经过 40 多年的严格研究,但由于缺乏结构信息,TPT 的分子机制仍未得到很好的理解。在这里,我们报告了 TPT 与两种不同底物(3-磷酸甘油酸和无机磷酸)结合的闭合物构象的晶体结构。这些结构表明,TPT 采用了 10 次跨膜药物/代谢物转运蛋白折叠。两种底物都结合在同一个中央口袋内,其中保守的赖氨酸、精氨酸和酪氨酸残基识别共享的磷酸基团。与细菌药物/代谢物转运蛋白的外向开放构象的结构比较表明,螺旋束发生 rocker-switch 运动,分子动力学模拟支持这样一种模型,即这种 rocker-switch 运动与底物结合紧密耦合,以确保严格的 1:1 交换。这些结果揭示了 TPT 进行糖磷酸/磷酸交换的独特机制。