4.6 Article

Substrate-induced Unlocking of the Inner Gate Determines the Catalytic Efficiency of a Neurotransmitter:Sodium Symporter

期刊

JOURNAL OF BIOLOGICAL CHEMISTRY
卷 290, 期 44, 页码 26725-26738

出版社

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M115.677658

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资金

  1. National Institutes of Health [P01 DA 12408, DA022413, DA17293]
  2. Danish Council for Independent Research-Sapere Aude Program
  3. Lundbeck Foundation Center for Biomembranes in Nanomedicine
  4. UNIK Center for Synthetic Biology
  5. European Community [HEALTH-F4-2007-201924]
  6. Carlsberg Foundation
  7. Bikuben Foundation

向作者/读者索取更多资源

Neurotransmitter: sodium symporters (NSSs) mediate reuptake of neurotransmitters from the synaptic cleft and are targets for several therapeutics and psychostimulants. The prokaryotic NSS homologue, LeuT, represents a principal structural model for Na+ coupled transport catalyzed by these proteins. Here, we used site-directed fluorescence quenching spectroscopy to identify in LeuTa substrate-induced conformational rearrangement at the inner gate conceivably leading to formation of a structural intermediate preceding transition to the in ward-open conformation. The substrate induced, Na+-dependent change required an intact primary substrate-binding site and involved increased water exposure of the cytoplasmic end of transmembrane segment 5. The findings were supported by simulations predicting disruption of an intracellular interaction network leading to a discrete rotation of transmembrane segment 5 and the adjacent intracellular loop 2. The magnitude of the spectroscopic response correlated inversely with the transport rate for different substrates, suggesting that stability of the intermediate represents an unrecognized rate-limiting barrier in the NSS transport mechanism.

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