National Biomedical Center for Advanced Electron Spin Resonance Technology, Cornell University, Ithaca, New York, USA.
Nat Struct Mol Biol. 2013 Feb;20(2):215-21. doi: 10.1038/nsmb.2494. Epub 2013 Jan 20.
Sodium and aspartate symporter from Pyrococcus horikoshii, Glt(Ph), is a homolog of the mammalian glutamate transporters, homotrimeric integral membrane proteins that control neurotransmitter levels in brain synapses. These transporters function by alternating between outward-facing and inward-facing states, in which the substrate binding site is oriented toward the extracellular space and the cytoplasm, respectively. Here we used double electron-electron resonance (DEER) spectroscopy to probe the structure and the state distribution of the subunits in the trimer in distinct hydrophobic environments of detergent micelles and lipid bilayers. Our experiments reveal a conformational ensemble of protomers that sample the outward-facing and inward-facing states with nearly equal probabilities, indicative of comparable energies, and independently of each other. On average, the distributions varied only modestly in detergent and in bilayers, but in several mutants unique conformations were stabilized by the latter.
来自 Pyrococcus horikoshii 的钠和天冬氨酸协同转运蛋白,Glt(Ph),是哺乳动物谷氨酸转运蛋白的同源物,是一种三聚体整合膜蛋白,可控制脑突触中的神经递质水平。这些转运蛋白通过交替向外和向内的状态来发挥作用,在这两种状态下,底物结合位点分别朝向细胞外空间和细胞质。在这里,我们使用双电子电子共振(DEER)光谱法在去污剂胶束和脂质双层的不同疏水环境中探测三聚体中亚基的结构和状态分布。我们的实验揭示了一个构象的单体集合,该集合以几乎相等的概率采样外向和内向状态,表明能量相当,且彼此独立。平均而言,在去污剂和双层中,分布变化仅略有不同,但在几个突变体中,后者稳定了独特的构象。