Murtazina R, Booth B J, Bullis B L, Singh D N, Fliegel L
Department of Biochemistry, Faculty of Medicine, University of Alberta, Edmonton, Alberta, Canada.
Eur J Biochem. 2001 Sep;268(17):4674-85. doi: 10.1046/j.1432-1327.2001.02391.x.
The NHE1 isoform of the Na+/H+ exchanger is a ubiquitous plasma membrane protein that regulates intracellular pH in mammalian cells. Site-specific mutagenesis was used to examine the functional role of conserved, polar amino-acid residues occurring in segments of the protein associated with the membrane. Seventeen mutant proteins were assessed by characterization of intracellular pH changes in stably transfected cells that lacked an endogenous Na+/H+ exchanger. All of the mutant proteins were targeted correctly to the plasma membrane and were expressed at similar levels. Amino-acid residues Glu262 and Asp267 were critical to Na+/H+ exchanger activity while mutation of Glu391 resulted in only a partial reduction in activity. The Glu262-->Gln mutant was expressed partially as a deglycosylated protein with increased sensitivity to trypsin treatment in presence of Na+. Substitution of mutated Glu262, Asp267 and Glu391 with alternative acidic residues restored Na+/H+ exchanger activity. The Glu262-->Asp mutant had a decreased affinity for Li+, but its activity for Na+ and H+ ions was unaffected. The results support the hypothesis that side-chain oxygen atoms in a few, critically placed amino acids are important in Na+/H+ exchanger activity and the acidic amino-acid residues at positions 262, 267 and 391 are good candidates for being involved in Na+ coordination by the protein.
Na⁺/H⁺ 交换体的 NHE1 亚型是一种普遍存在的质膜蛋白,可调节哺乳动物细胞内的 pH 值。采用位点特异性诱变来研究该蛋白与膜相关片段中保守的极性氨基酸残基的功能作用。通过对缺乏内源性 Na⁺/H⁺ 交换体的稳定转染细胞内 pH 变化的表征,评估了 17 种突变蛋白。所有突变蛋白均正确靶向质膜并以相似水平表达。氨基酸残基 Glu262 和 Asp267 对 Na⁺/H⁺ 交换体活性至关重要,而 Glu391 的突变仅导致活性部分降低。Glu262→Gln 突变体部分表达为去糖基化蛋白,在有 Na⁺ 存在的情况下对胰蛋白酶处理的敏感性增加。用替代酸性残基取代突变的 Glu262、Asp267 和 Glu391 可恢复 Na⁺/H⁺ 交换体活性。Glu262→Asp 突变体对 Li⁺ 的亲和力降低,但其对 Na⁺ 和 H⁺ 离子的活性未受影响。结果支持以下假设:少数关键位置氨基酸的侧链氧原子在 Na⁺/H⁺ 交换体活性中很重要,并且 262、267 和 391 位的酸性氨基酸残基很可能参与该蛋白对 Na⁺ 的配位。