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A mechanism for intracellular release of Na+ by neurotransmitter/sodium symporters.


ABSTRACT: Neurotransmitter/sodium symporters (NSSs) terminate synaptic signal transmission by Na+-dependent reuptake of released neurotransmitters. Key conformational states have been reported for the bacterial homolog LeuT and an inhibitor-bound Drosophila dopamine transporter. However, a coherent mechanism of Na+-driven transport has not been described. Here, we present two crystal structures of MhsT, an NSS member from Bacillus halodurans, in occluded inward-facing states with bound Na+ ions and L-tryptophan, providing insight into the cytoplasmic release of Na+. The switch from outward- to inward-oriented states is centered on the partial unwinding of transmembrane helix 5, facilitated by a conserved GlyX9Pro motif that opens an intracellular pathway for water to access the Na2 site. We propose a mechanism, based on our structural and functional findings, in which solvation through the TM5 pathway facilitates Na+ release from Na2 and the transition to an inward-open state.

SUBMITTER: Malinauskaite L 

PROVIDER: S-EPMC4346222 | biostudies-literature | 2014 Nov

REPOSITORIES: biostudies-literature

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A mechanism for intracellular release of Na+ by neurotransmitter/sodium symporters.

Malinauskaite Lina L   Quick Matthias M   Reinhard Linda L   Lyons Joseph A JA   Yano Hideaki H   Javitch Jonathan A JA   Nissen Poul P  

Nature structural & molecular biology 20141005 11


Neurotransmitter/sodium symporters (NSSs) terminate synaptic signal transmission by Na+-dependent reuptake of released neurotransmitters. Key conformational states have been reported for the bacterial homolog LeuT and an inhibitor-bound Drosophila dopamine transporter. However, a coherent mechanism of Na+-driven transport has not been described. Here, we present two crystal structures of MhsT, an NSS member from Bacillus halodurans, in occluded inward-facing states with bound Na+ ions and L-tryp  ...[more]

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