Identification and mutational analysis of amino acid residues involved in dipyridamole interactions with human and caenorhabditis elegans equilibrative nucleoside transporters

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Abstract

The equilibrative nucleoside transporters, hENT1 and CeENT1 from humans and Caenorhabditis elegans, respectively, are inhibited by nanomolar concentrations of dipyridamole and share a common 11-transmembrane helix (TM) topology. Random mutagenesis and screening by functional complementation in yeast for clones with reduced sensitivities to dipyridamole yielded mutations at Ile 429 in TM 11 of CeENT1 and Met 33 in TM 1 of hENT1. Mutational analysis of the corresponding residues of both proteins suggested important roles for these residues in competitive inhibition of hENT1 and CeENT1 by dipyridamole. To verify the roles of these residues in dipyridamole interactions, hENT2, which naturally exhibits low dipyridamole sensitivity, was mutated to contain side chains favorable for high affinity dipyridamole binding (i.e. a Met at the TM1 and/or an Ile at the TM 11 positions). The single mutants exhibited increased hENT2 sensitivity to inhibition by dipyridamole, and the double mutant was the most sensitive, with an IC 50 value that was only 2% of that of wild type. Functional analysis of the TM 1 and 11 mutants of hENT1 and CeENT1 revealed that Ala and Thr in the TM 1 and 11 positions, respectively, impaired uridine and adenosine transport and that Leu 442 of hENT1 was involved in permeant selectivity. Mechanistic and structural models of dipyridamole interactions with the TM 1 and 11 residues are proposed. This study demonstrated that the corresponding residues in TMs 1 and 11 of hENT1, hENT2, and CeENT1 are important for dipyridamole interactions and nucleoside transport. © 2005 by The American Society for Biochemistry and Molecular Biology, Inc.

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Visser, F., Baldwin, S. A., Isaac, R. E., Young, J. D., & Cass, C. E. (2005). Identification and mutational analysis of amino acid residues involved in dipyridamole interactions with human and caenorhabditis elegans equilibrative nucleoside transporters. Journal of Biological Chemistry, 280(12), 11025–11034. https://doi.org/10.1074/jbc.M410348200

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