首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Mutation of Aspartate 555 of the Sodium/Bicarbonate Transporter SLC4A4/NBCe1 Induces Chloride Transport
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Mutation of Aspartate 555 of the Sodium/Bicarbonate Transporter SLC4A4/NBCe1 Induces Chloride Transport

机译:钠/碳酸氢根转运蛋白SLC4A4 / NBCe1的天冬氨酸555突变诱导氯化物转运

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摘要

To understand the mechanism for ion transport through the sodium/bicarbonate transporter SLC4A4 (NBCe1), we examined amino acid residues, within transmembrane domains, that are conserved among electrogenic Na/HCO3 transporters but are substituted with residues at the corresponding site of all electroneutral Na/HCO3 transporters. Point mutants were constructed and expressed in Xenopus oocytes to assess function using two-electrode voltage clamp. Among the mutants, D555E (charge-conserved substitution of the aspartate at position 555 with a glutamate) produced decreasing HCO3 currents at more positive membrane voltages. Immunohistochemistry showed D555E protein expression in oocyte membranes. D555E induced Na/HCO3-dependent pH recovery from a CO2-induced acidification. Current-voltage relationships revealed that D555E produced an outwardly rectifying current in the nominally CO2/HCO3-free solution that was abolished by Cl removal from the bath. In the presence of CO2/HCO3, however, the outward current produced by D555E decreased only slightly after Cl removal. Starting from a Cl-free condition, D555E produced dose-dependent outward currents in response to a series of chloride additions. The D555E-mediated chloride current decreased by 70% in the presence of CO2/HCO3. The substitution of Asp555 with an asparagine also produced a Cl current. Anion selectivity experiments revealed that D555E was broadly permissive to other anions including NO3. Fluorescence measurements of chloride transport were done with human embryonic kidney HEK 293 cells expressing NBCe1 and D555E. A marked increase in chloride transport was detected in cells expressing D555E. We conclude that Asp555 plays a role in HCO3 selectivity.
机译:为了了解离子通过钠/碳酸氢根转运蛋白SLC4A4(NBCe1)转运的机制,我们检查了跨膜结构域中的氨基酸残基,这些残基在电化Na / HCO3转运蛋白中是保守的,但被所有电子中性Na的相应位点上的残基取代/ HCO3转运蛋白。构建点突变体并在非洲爪蟾卵母细胞中表达,以使用两电极电压钳评估功能。在这些突变体中,D555E(555位的谷氨酸用电荷保守的谷氨酸替代)在更正的膜电压下产生降低的HCO3 -电流。免疫组织化学显示D555E蛋白在卵母细胞膜中表达。 D555E从CO2诱导的酸化中诱导了Na / HCO3依赖性的pH恢复。电流-电压关系表明,D555E在名义上不含CO2 / HCO3 -的溶液中产生了向外整流的电流,该溶液被从浴中去除Cl -所废除。但是,在存在CO2 / HCO3 -的情况下,除去Cl -后,D555E产生的向外电流仅略有下降。从无Cl -条件开始,D555E响应于一系列氯化物添加,产生了剂量依赖性的向外电流。在存在CO2 / HCO3 -的情况下,D555E介导的氯离子电流降低了70%。用天冬酰胺取代Asp 555 也会产生Cl -电流。阴离子选择性实验表明,D555E广泛允许包含NO3 -的其他阴离子。用表达NBCe1和D555E的人胚肾脏HEK 293细胞进行氯化物转运的荧光测量。在表达D555E的细胞中检测到氯化物转运明显增加。我们得出结论,Asp 555 在HCO3 -选择性中起作用。

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