UCLouvain, Louvain Institute of Biomolecular Science and Technology (LIBST), Group of Molecular Physiology, Louvain-la-Neuve, Belgium.
UCLouvain, Louvain Institute of Biomolecular Science and Technology (LIBST), Group of Molecular Physiology, Louvain-la-Neuve, Belgium.
J Biol Chem. 2023 May;299(5):104628. doi: 10.1016/j.jbc.2023.104628. Epub 2023 Mar 22.
The GDT1 family is broadly spread and highly conserved among living organisms. GDT1 members have functions in key processes like glycosylation in humans and yeasts and photosynthesis in plants. These functions are mediated by their ability to transport ions. While transport of Ca or Mn is well established for several GDT1 members, their transport mechanism is poorly understood. Here, we demonstrate that H ions are transported in exchange for Ca and Mn cations by the Golgi-localized yeast Gdt1 protein. We performed direct transport measurement across a biological membrane by expressing Gdt1p in Lactococcus lactis bacterial cells and by recording either the extracellular pH or the intracellular pH during the application of Ca, Mn or H gradients. Besides, in vivo cytosolic and Golgi pH measurements were performed in Saccharomyces cerevisiae with genetically encoded pH probes targeted to those subcellular compartments. These data point out that the flow of H ions carried by Gdt1p could be reversed according to the physiological conditions. Together, our experiments unravel the influence of the relative concentration gradients for Gdt1p-mediated H transport and pave the way to decipher the regulatory mechanisms driving the activity of GDT1 orthologs in various biological contexts.
GDT1 家族在生物界中广泛存在且高度保守。GDT1 成员在人类和酵母中的糖基化以及植物中的光合作用等关键过程中具有功能。这些功能是通过它们运输离子的能力介导的。虽然已经确定了几种 GDT1 成员对 Ca 或 Mn 的运输,但它们的运输机制仍知之甚少。在这里,我们证明酵母 Gdt1 蛋白通过与高尔基体结合,以 H 离子交换 Ca 和 Mn 阳离子。我们通过在乳球菌细菌细胞中表达 Gdt1p 并在施加 Ca、Mn 或 H 梯度时记录细胞外 pH 或细胞内 pH 来进行跨生物膜的直接运输测量。此外,我们还通过针对这些亚细胞区室的遗传编码 pH 探针在酿酒酵母中进行了细胞溶质和高尔基体 pH 的测量。这些数据表明,Gdt1p 携带的 H 离子流可以根据生理条件逆转。总之,我们的实验揭示了 Gdt1p 介导的 H 转运的相对浓度梯度对其的影响,并为在各种生物背景下破译驱动 GDT1 同源物活性的调控机制铺平了道路。