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精氨酸440和甘氨酸455/甘氨酸456的突变对钠/氢交换体1的pH感知产生相反的影响。

Mutations of Arg440 and Gly455/Gly456 oppositely change pH sensing of Na+/H+ exchanger 1.

作者信息

Wakabayashi Shigeo, Hisamitsu Takashi, Pang Tianxiang, Shigekawa Munekazu

机构信息

Department of Molecular Physiology, National Cardiovascular Center Research Institute, Suita, Osaka 565-8565 Japan.

出版信息

J Biol Chem. 2003 Apr 4;278(14):11828-35. doi: 10.1074/jbc.M213243200. Epub 2003 Jan 30.

Abstract

To identify important amino acid residues involved in intracellular pH (pH(i)) sensing of Na(+)/H(+) exchanger 1, we produced single-residue substitution mutants in the region of the exchanger encompassing the putative 11th transmembrane segment (TM11) and its adjacent intracellular (intracellular loop (IL) 5) and extracellular loops (extracellular loop 6). Substitution of Arg(440) in IL5 with other residues except positively charged Lys caused a large shift in pH(i) dependence of (22)Na(+) uptake to an acidic side, whereas substitution of Gly(455) or Gly(456) within the highly conserved glycine-rich sequence of TM11 shifted pH(i) dependence to an alkaline side. The observed alkaline shift was larger with substitution of Gly(455) with residues with increasing sizes, suggesting the involvement of the steric effect. Interestingly, mutation of Arg(440) (R440D) abolished the ATP depletion-induced acidic shift in pH(i) dependence of (22)Na(+) uptake as well as the cytoplasmic alkalinization induced by various extracellular stimuli, whereas with that of Gly(455) (G455Q) these functions were preserved. These mutant exchangers did not alter apparent affinities for extracellular transport substrates Na(+) and H(+) and the inhibitor 5-(N-ethyl-N-isopropyl)amiloride. These results suggest that positive charge at Arg(440) is required for normal pH(i) sensing, whereas mutation-induced perturbation of the TM11 structure may be involved in the effects of Gly mutations. Thus, both Arg(440) in IL5 and Gly residues in the conserved segment of TM11 appear to constitute important elements for proper functioning of the putative "pH(i) sensor" of Na(+)/H(+) exchanger 1.

摘要

为了确定参与钠氢交换体1细胞内pH值(pH(i))感知的重要氨基酸残基,我们在该交换体包含假定的第11个跨膜片段(TM11)及其相邻的细胞内(细胞内环(IL)5)和细胞外环(细胞外环6)的区域产生了单残基替代突变体。将IL5中的精氨酸(Arg(440))替换为除带正电荷的赖氨酸以外的其他残基,导致(22)Na(+)摄取的pH(i)依赖性大幅向酸性侧偏移,而TM11高度保守的富含甘氨酸序列中的甘氨酸(Gly(455))或甘氨酸(Gly(456))被替换则使pH(i)依赖性向碱性侧偏移。随着用尺寸不断增加的残基替换甘氨酸(Gly(455)),观察到的碱性偏移更大,这表明存在空间效应。有趣的是,精氨酸(Arg(440))突变(R440D)消除了ATP耗竭诱导的(22)Na(+)摄取的pH(i)依赖性酸性偏移以及各种细胞外刺激诱导的细胞质碱化,而甘氨酸(Gly(455))突变(G455Q)时这些功能得以保留。这些突变交换体并未改变对细胞外转运底物钠(Na(+))和氢(H(+))以及抑制剂5-(N-乙基-N-异丙基)氨氯吡咪的表观亲和力。这些结果表明,精氨酸(Arg(440))处的正电荷是正常pH(i)感知所必需的,而突变引起的TM11结构扰动可能与甘氨酸突变的效应有关。因此,IL5中的精氨酸(Arg(440))和TM11保守片段中的甘氨酸残基似乎都构成了钠氢交换体1假定的“pH(i)传感器”正常发挥功能的重要元件。

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