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Conformational dynamics of ligand-dependent alternating access in LeuT
Journal article   Open access   Peer reviewed

Conformational dynamics of ligand-dependent alternating access in LeuT

Kelli Kazmier, Shruti Sharma, Matthias Quick, Shahidul M Islam, Benoît Roux, Harel Weinstein, Jonathan A Javitch and Hassane S McHaourab
Nature structural & molecular biology, Vol.21(5), pp.472-479
05/2014
PMCID: PMC4050370
PMID: 24747939

Abstract

Bacterial Proteins - chemistry Bacterial Proteins - physiology Ligands Models, Molecular Neurotransmitter Transport Proteins - chemistry Protein Structure, Tertiary Spin Labels Symporters - chemistry Symporters - physiology
The leucine transporter (LeuT) from Aquifex aeolicus is a bacterial homolog of neurotransmitter/sodium symporters (NSSs) that catalyze reuptake of neurotransmitters at the synapse. Crystal structures of wild-type and mutants of LeuT have been interpreted as conformational states in the coupled transport cycle. However, the mechanistic identities inferred from these structures have not been validated, and the ligand-dependent conformational equilibrium of LeuT has not been defined. Here, we used distance measurements between spin-label pairs to elucidate Na(+)- and leucine-dependent conformational changes on the intracellular and extracellular sides of the transporter. The results identify structural motifs that underlie the isomerization of LeuT between outward-facing, inward-facing and occluded states. The conformational changes reported here present a dynamic picture of the alternating-access mechanism of LeuT and NSSs that is different from the inferences reached from currently available structural models.
url
https://doi.org/10.1038/nsmb.2816View
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