Substrate-induced conformational dynamics of the dopamine transporter.

Anne Kathrine Nielsen, Ingvar R Möller, Yong Wang, Søren G F Rasmussen, Kresten Lindorff-Larsen, Kasper D Rand, Claus J Loland

Journal: Nature communications 2019;10(1):2714

PMID: 31221956

Abstract

The dopamine transporter is a member of the neurotransmitter:sodium symporters (NSSs), which are responsible for termination of neurotransmission through Na-driven reuptake of neurotransmitter from the extracellular space. Experimental evidence elucidating the coordinated conformational rearrangements related to the transport mechanism has so far been limited. Here we probe the global Na- and dopamine-induced conformational dynamics of the wild-type Drosophila melanogaster dopamine transporter using hydrogen-deuterium exchange mass spectrometry. We identify Na- and dopamine-induced changes in specific regions of the transporter, suggesting their involvement in protein conformational transitions. Furthermore, we detect ligand-dependent slow cooperative fluctuations of helical stretches in several domains of the transporter, which could be a molecular mechanism that assists in the transporter function. Our results provide a framework for understanding the molecular mechanism underlying the function of NSSs by revealing detailed insight into the state-dependent conformational changes associated with the alternating access model of the dopamine transporter.

Address: Laboratory for Membrane Protein Dynamics, Department of Neuroscience, University of Copenhagen, 2200, Copenhagen N, Denmark.; Protein Analysis Group, Department of Pharmacy, University of Copenhagen, 2100, Copenhagen Ø, Denmark.; Structural Biology and NMR Laboratory, Linderstrøm-Lang Centre for Protein Science, Department of Biology, University of Copenhagen, 2200, Copenhagen N, Denmark.; Department of Neuroscience, University of Copenhagen, 2200, Copenhagen N, Denmark.; Protein Analysis Group, Department of Pharmacy, University of Copenhagen, 2100, Copenhagen Ø, Denmark. [email protected].; Laboratory for Membrane Protein Dynamics, Department of Neuroscience, University of Copenhagen, 2200, Copenhagen N, Denmark. [email protected].
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