Random mutagenesis reveals a novel site involved in inhibitor interaction within the fourth transmembrane segment of the Na+/H+ exchanger-1

被引:62
作者
Counillon, L
Noel, J
Reithmeier, RAF
Pouyssegur, J
机构
[1] Centre de Biochimie UMR CNRS 6543, Faculté des Sciences, Univ. de Nice-Sophia Antipolis
[2] Département de Physiologie, Université de Montreal, CP6128, Montreal, Que. H3C 3T8, Succursale Centreville
[3] Med. Res. Cncl. Canada Grp. Memb. B., Department of Medicine, University of Toronto, Toronto
关键词
D O I
10.1021/bi9615405
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We constructed and expressed human Na+/H+ exchanger (NHE-1 isoform) cDNAs randomly mutagenized within the sequence encoding the transmembrane region of the exchanger. Using acute intracellular acidifications in the presence of the NHE-1 inhibitor amiloride (300 mu M), we selected a clone expressing a NHE-1 protein exhibiting a 3.3-fold increase in K-i for amiloride (10 mu M instead of 3 mu M). Sequencing its cDNA revealed one point mutation resulting in a Gly174Ser substitution near the carboxy-terminal end of the putative fourth transmembrane domain of NHE-1. The introduction of this mutation into the wild-type NHE-1 cDNA and its expression reproduced the features of the mutant. Site-directed Gly174Ala and Gly174Asp substitutions resulted, respectively, in no change and in an approximately 4-fold decrease in the amiloride affinity. An additional mutation (Leu163Phe) in transmembrane segment four has previously been shown to result in a decreased sensitivity to amiloride and its derivatives. The Leu163Phe/Gly174Ser double mutant possesses a strongly reduced affinity for various inhibitors (17 mu M for amiloride, 2 mu M for MPA, and 20 mu M for HOE694) and also a decreased affinity (28 mM instead of 14 mM) for sodium. Although distant in the transmembrane segment, Leu163 and Gly174 residues are both not hydrogen-bonded, being one helix turn from proline residues, and are therefore located in highly flexible regions of the protein. This flexibility and the availability of free carbonyls may play an important role in the interaction with the inhibitors and transported cations.
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页码:2951 / 2959
页数:9
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