Yadav Ravi, Han Gye Won, Gati Cornelius
The Bridge Institute, Michelson Center for Convergent Biosciences, University of Southern California, Los Angeles, CA, USA.
Molecular and Computational Biology, Department of Biological Sciences, University of Southern California, Los Angeles, CA, USA.
Nat Commun. 2025 Apr 23;16(1):3830. doi: 10.1038/s41467-025-59066-w.
γ-Aminobutyric acid (GABA) transporters (GATs) are sodium- and chloride-dependent transporters that mediate the reuptake of the inhibitory neurotransmitter GABA after its release from synaptic vesicles. GAT3 transports GABA from the synaptic cleft into astrocytes and modulates synaptic signaling. GAT3 has been implicated in various neurological disorders and neurodegenerative diseases, rendering it a therapeutically important drug target. To understand the mechanism of transport and inhibition, here we determine cryo-electron microscopy structures of human GAT3 in its apo form and in complex with the selective inhibitor SNAP-5114. Unexpectedly, we have discovered that SNAP-5114 acts as a noncompetitive inhibitor at GAT3. SNAP-5114 binds at the orthosteric substrate binding pocket of GAT3 in its inward-open conformation, in agreement with its noncompetitive inhibition of GABA transport. In the apo state, GAT3 also adopts an inward-open conformation with the orthosteric substrate binding pocket exposed to cytoplasm, while an extensive network of interactions closes the extracellular gate. The structures, complemented with mutagenesis and radioligand uptake assays, show that the increased orthosteric substrate binding pocket volume and bulky moieties of SNAP-5114, drive the selective inhibition of GAT3 over GAT1. Our structural and functional studies reveal the mechanism of selective inhibition of GAT3 and provide a framework for GAT3-targeted rational drug design.
γ-氨基丁酸(GABA)转运体(GATs)是依赖钠和氯的转运体,可介导抑制性神经递质GABA从突触小泡释放后再摄取。GAT3将GABA从突触间隙转运到星形胶质细胞中,并调节突触信号传导。GAT3与多种神经疾病和神经退行性疾病有关,使其成为具有重要治疗意义的药物靶点。为了解转运和抑制机制,我们在此确定了人GAT3的无配体形式及其与选择性抑制剂SNAP-5114复合物的冷冻电镜结构。出乎意料的是,我们发现SNAP-5114在GAT3上起非竞争性抑制剂的作用。SNAP-5114在其向内开放构象下结合于GAT3的正构底物结合口袋,与其对GABA转运的非竞争性抑制作用一致。在无配体状态下,GAT3也采用向内开放构象,正构底物结合口袋暴露于细胞质中,而广泛的相互作用网络关闭了细胞外门。这些结构结合诱变和放射性配体摄取试验表明,正构底物结合口袋体积的增加以及SNAP-5114的庞大基团,导致GAT3对GAT1的选择性抑制。我们的结构和功能研究揭示了GAT3选择性抑制的机制,并为以GAT3为靶点的合理药物设计提供了框架。