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神经递质/钠离子转运体同源物 LeuT 具有单一的高亲和力底物结合位点。

Neurotransmitter/sodium symporter orthologue LeuT has a single high-affinity substrate site.

机构信息

Department of Biochemistry and Molecular Biology, Oregon Health and Science University, 3181 SW Sam Jackson Park Road, Portland, Oregon 97239, USA.

出版信息

Nature. 2010 Dec 23;468(7327):1129-32. doi: 10.1038/nature09581.

Abstract

Neurotransmitter/sodium symporters (NSSs) couple the uptake of neurotransmitter with one or more sodium ions, removing neurotransmitter from the synaptic cleft. NSSs are essential to the function of chemical synapses, are associated with multiple neurological diseases and disorders, and are the targets of therapeutic and illicit drugs. LeuT, a prokaryotic orthologue of the NSS family, is a model transporter for understanding the relationships between molecular mechanism and atomic structure in a broad range of sodium-dependent and sodium-independent secondary transporters. At present there is a controversy over whether there are one or two high-affinity substrate binding sites in LeuT. The first-reported crystal structure of LeuT, together with subsequent functional and structural studies, provided direct evidence for a single, high-affinity, centrally located substrate-binding site, defined as the S1 site. Recent binding, flux and molecular simulation studies, however, have been interpreted in terms of a model where there are two high-affinity binding sites: the central, S1, site and a second, the S2 site, located within the extracellular vestibule. Furthermore, it was proposed that the S1 and S2 sites are allosterically coupled such that occupancy of the S2 site is required for the cytoplasmic release of substrate from the S1 site. Here we address this controversy by performing direct measurement of substrate binding to wild-type LeuT and to S2 site mutants using isothermal titration calorimetry, equilibrium dialysis and scintillation proximity assays. In addition, we perform uptake experiments to determine whether the proposed allosteric coupling between the putative S2 site and the S1 site manifests itself in the kinetics of substrate flux. We conclude that LeuT harbours a single, centrally located, high-affinity substrate-binding site and that transport is well described by a simple, single-substrate kinetic mechanism.

摘要

神经递质/钠离子转运体 (NSSs) 将神经递质的摄取与一个或多个钠离子偶联,从而将神经递质从突触间隙中去除。NSSs 对化学突触的功能至关重要,与多种神经疾病和障碍有关,也是治疗性和非法药物的靶点。LeuT 是 NSS 家族的原核同源物,是理解广泛的钠离子依赖和非依赖的二级转运体中分子机制与原子结构之间关系的模型转运体。目前,关于 LeuT 中是否存在一个或两个高亲和力底物结合位点存在争议。首次报道的 LeuT 晶体结构,以及随后的功能和结构研究,为单一的、高亲和力、位于中心的底物结合位点提供了直接证据,该结合位点被定义为 S1 结合位点。然而,最近的结合、通量和分子模拟研究,根据存在两个高亲和力结合位点的模型进行了解释:中央的 S1 结合位点和位于细胞外前庭内的第二个 S2 结合位点。此外,有人提出 S1 和 S2 结合位点是变构偶联的,使得 S2 结合位点的占据是细胞质中从 S1 结合位点释放底物所必需的。在这里,我们通过使用等温滴定微量热法、平衡透析和闪烁接近测定法直接测量野生型 LeuT 和 S2 结合位点突变体与底物的结合,来解决这一争议。此外,我们还进行了摄取实验,以确定所提出的 S2 结合位点和 S1 结合位点之间的变构偶联是否在底物通量的动力学中表现出来。我们得出的结论是,LeuT 具有一个单一的、位于中心的、高亲和力的底物结合位点,并且转运可以很好地用简单的、单一底物的动力学机制来描述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3924/3079577/4f2913b80a1d/nihms-244827-f0001.jpg

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