Touret N, Poujeol P, Counillon L
UMR CNRS 6548, Faculté des Sciences, Parc Valrose, Université de Nice, Sophia Antipolis 06108, Nice Cedex 2, France.
Biochemistry. 2001 Apr 24;40(16):5095-101. doi: 10.1021/bi0025464.
On the basis of intracellular acidifications in the presence of 30 microM cariporide, we selected a fibroblast cell line termed CR5, expressing a mutated Na(+)/H(+) exchanger NHE-1 with a low affinity for cariporide (87 +/- 11.6 microM) and extracellular sodium (248 +/- 63.7 mM). This mutated exchanger displays a Phe162Ser substitution in its fourth transmembrane segment. Using intracellular acidifications in the presence of 3 mM external sodium on the CR5 fibroblasts, we isolated two revertants which exhibited a complete recovery for sodium affinity but were still resistant to cariporide. Sequencing the cDNAs encoding these revertants revealed the presence of two mutations situated at a distant location from Phe162 in the same fourth transmembrane segment (Ile169Ser and Ile170Thr). Interestingly, introducing these two mutations in the wild-type cDNA did not result in a significant increase in affinity for sodium. Furthermore, all the mutants characterized in this study display an unchanged affinity for lithium, another transported cation. These data suggest that the mutation resulting in the low sodium affinity and the two mutations responsible for the reversion of this phenotype affect the binding of sodium itself instead of the conformational changes triggering substrate translocation. Taken together, these results allow us to propose that optimal sodium binding by the Na(+)/H(+) exchangers requires the geometrical integrity of a highly constrained sodium coordination site.
基于在存在30微摩尔卡里波罗的情况下细胞内的酸化作用,我们选择了一种成纤维细胞系,称为CR5,它表达一种对卡里波罗(87±11.6微摩尔)和细胞外钠(248±63.7毫摩尔)亲和力低的突变型钠/氢交换体NHE-1。这种突变的交换体在其第四个跨膜片段中显示出Phe162Ser取代。利用在CR5成纤维细胞存在3毫摩尔外部钠的情况下的细胞内酸化作用,我们分离出两个回复突变体,它们对钠的亲和力完全恢复,但对卡里波罗仍有抗性。对编码这些回复突变体的cDNA进行测序,发现在同一第四个跨膜片段中与Phe162距离较远的位置存在两个突变(Ile169Ser和Ile170Thr)。有趣的是,在野生型cDNA中引入这两个突变并没有导致对钠的亲和力显著增加。此外,本研究中表征的所有突变体对另一种转运阳离子锂的亲和力均未改变。这些数据表明,导致低钠亲和力的突变以及导致该表型回复的两个突变影响钠本身的结合,而不是触发底物转运的构象变化。综上所述,这些结果使我们能够提出,钠/氢交换体对钠的最佳结合需要高度受限的钠配位位点的几何完整性。