Conserved glutamate residues Glu-343 and Glu-519 provide mechanistic insights into cation/nucleoside cotransport by human concentrative nucleoside transporter hCNT3

J Biol Chem. 2009 Jun 19;284(25):17266-17280. doi: 10.1074/jbc.M109.009613. Epub 2009 Apr 20.

Abstract

Human concentrative nucleoside transporter 3 (hCNT3) utilizes electrochemical gradients of both Na(+) and H(+) to accumulate pyrimidine and purine nucleosides within cells. We have employed radioisotope flux and electrophysiological techniques in combination with site-directed mutagenesis and heterologous expression in Xenopus oocytes to identify two conserved pore-lining glutamate residues (Glu-343 and Glu-519) with essential roles in hCNT3 Na(+)/nucleoside and H(+)/nucleoside cotransport. Mutation of Glu-343 and Glu-519 to aspartate, glutamine, and cysteine severely compromised hCNT3 transport function, and changes included altered nucleoside and cation activation kinetics (all mutants), loss or impairment of H(+) dependence (all mutants), shift in Na(+):nucleoside stoichiometry from 2:1 to 1:1 (E519C), complete loss of catalytic activity (E519Q) and, similar to the corresponding mutant in Na(+)-specific hCNT1, uncoupled Na(+) currents (E343Q). Consistent with close-proximity integration of cation/solute-binding sites within a common cation/permeant translocation pore, mutation of Glu-343 and Glu-519 also altered hCNT3 nucleoside transport selectivity. Both residues were accessible to the external medium and inhibited by p-chloromercuribenzene sulfonate when converted to cysteine.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • 4-Chloromercuribenzenesulfonate / pharmacology
  • Animals
  • Binding, Competitive
  • Cell Membrane / metabolism
  • Conserved Sequence
  • Female
  • Glutamic Acid / chemistry
  • Guanosine / metabolism
  • Humans
  • In Vitro Techniques
  • Ion Transport
  • Kinetics
  • Membrane Transport Proteins / chemistry*
  • Membrane Transport Proteins / genetics
  • Membrane Transport Proteins / metabolism*
  • Models, Molecular
  • Mutagenesis, Site-Directed
  • Nucleosides / metabolism
  • Oocytes / drug effects
  • Oocytes / metabolism
  • Recombinant Proteins / chemistry
  • Recombinant Proteins / genetics
  • Recombinant Proteins / metabolism
  • Sodium / metabolism
  • Sodium / pharmacology
  • Uridine / metabolism
  • Xenopus

Substances

  • Membrane Transport Proteins
  • Nucleosides
  • Recombinant Proteins
  • cif nucleoside transporter
  • Guanosine
  • Glutamic Acid
  • 4-Chloromercuribenzenesulfonate
  • Sodium
  • Uridine