The Na+âHCOââ» cotransporters (NBCs) of the solute carrier 4 family (SLC4) are critical for regulating pH in cells as well as in fluids such as blood and cerebrospinal fluid. Moreover, mutations and gene disruptions in NBC are linked to a wide range of pathologies. NBCe1 (SLC4A4) is electrogenic because it has an apparent Na+:HCOââ» stoichiometry of 1:2 or 1:3, whereas NBCn1 (SLC4A7) is electroneutral because it has an apparent stoichiometry of 1:1. Because stoichiometry influences the effect of transport on membrane potential and vice versa, a central question is what structural features underlie electrogenicity versus electroneutrality. A previous study on rat NBCe1/n1 chimeras demonstrated that the structural elements determining the electrogenicity of NBCe1-A are located within the transmembrane domain, excluding the large third extracellular loop. In the present study we generated a series of chimeras of human NBCe1-A and human NBCn1-A. We found that replacing merely the predicted fourth extracellular loop (EL4) â containing 32 amino acid residues that include 7 prolines â of human NBCe1-A with EL4 of NBCn1-A creates an electroneutral NBC. The opposite switch converts an electroneutral construct to one with electrogenic properties. The introduction of an N-glycosylation site into EL4 confirms that at least a part of it is exposed to the extracellular fluid. We hypothesize that putative EL4 either contributes to the substrate-binding vestibule or indirectly influences substrate binding by interacting with one or more transmembrane segments, thereby controlling the nature of transport.
Role of an extracellular loop in determining the stoichiometry of Na+-HCOââ» cotransporters.
细胞外环在决定 Na+-HCO3- 共转运蛋白的化学计量中的作用
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作者:Chen Li-Ming, Liu Ying, Boron Walter F
| 期刊: | Journal of Physiology-London | 影响因子: | 4.400 |
| 时间: | 2011 | 起止号: | 2011 Feb 15; 589(Pt 4):877-90 |
| doi: | 10.1113/jphysiol.2010.198713 | 研究方向: | 细胞生物学 |
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