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首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Conferring electrogenicity to the electroneutral phosphate cotransporter NaPi-IIc (SLC34A3) reveals an internal cation release step
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Conferring electrogenicity to the electroneutral phosphate cotransporter NaPi-IIc (SLC34A3) reveals an internal cation release step

机译:赋予电中性磷酸盐共转运蛋白NaPi-IIc(SLC34A3)电动性揭示了内部阳离子释放步骤

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摘要

The SLC34 family of Na+-dependent inorganic phosphate cotransporters comprises two electrogenic isoforms (NaPi-IIa, NaPi-IIb) and an electroneutral isoform (NaPi-IIc). Both fulfill essential physiological roles in mammalian phosphate homeostasis. By substitution of three conserved amino acids, found in all electrogenic isoforms, at corresponding sites in NaPi-IIc, electrogenicity was re-established and the Na+/P i stoichiometry increased from 2:1 to 3:1. However, this engineered electrogenic construct (AAD-IIc) had a reduced apparent P i affinity and different presteady-state kinetics from the wild-type NaPi-IIa/b. We investigated AAD-IIc using electrophysiology and voltage clamp fluorometry to elucidate the compromised behavior. The activation energy for cotransport was threefold higher than for NaPi-IIc and 1.5-fold higher than for NaPi-IIa and the temperature dependence of presteady-state charge displacements suggested that the large activation energy was associated with the empty carrier reorientation. AAD-IIc shows a weak interaction of external Na+ ions with the electric field, and thus retains the electroneutral cooperative interaction of two Na+ ions preceding external P i binding of NaPi-IIc. Most of the presteady-state charge movement was accounted for by the empty carrier (in the absence of external P i ), and the cytosolic release of one Na+ ion (in the presence of P i ). Simulations using a kinetic model recapitulated the presteady-state and steady-state behavior and allowed identification of two critical partial reactions: the final release of Na+ to the cytosol and external P i binding. Fluorometric recordings from AAD-IIc mutants with Cys substituted at functionally important sites established that AAD-IIc undergoes substrate- and voltage-dependent conformational changes that correlated qualitatively with its presteady-state kinetics.
机译:Na +依赖性无机磷酸盐共转运蛋白的SLC34家族包含两个电异构体(NaPi-IIa,NaPi-IIb)和电子中性异构体(NaPi-IIc)。两者都在哺乳动物磷酸盐体内平衡中发挥重要的生理作用。通过替换NaPi-IIc中相应位点在所有电异构体中发现的三个保守氨基酸,可以重新建立电原性,并且Na + / Pi化学计量比从2:1增加到3:1。然而,这种工程化的电构建体(AAD-IIc)具有降低的表观P i亲和力和与野生型NaPi-IIa / b不同的稳态前动力学。我们使用电生理学和电压钳荧光法研究了AAD-IIc,以阐明其受损行为。共转运的活化能比NaPi-IIc高三倍,比NaPi-IIa高1.5倍,并且稳态电荷位移的温度依赖性表明,大的活化能与空载流子的取向有关。 AAD-IIc显示出外部Na +离子与电场之间的相互作用较弱,因此在NaPi-IIc与外部Pi结合之前保留了两个Na +离子的电中性协同作用。大部分稳态前的电荷运动是由空载子(在没有外部P i的情况下)和一个Na +离子的胞质释放(在P i的情况下)引起的。使用动力学模型进行的模拟概括了稳态和稳态行为,并确定了两个关键的部分反应:Na +最终释放至胞质溶胶和外部P i结合。从在功能上重要的位点被Cys取代的AAD-IIc突变体的荧光记录表明,AAD-IIc经历了与底物和电压有关的构象变化,该构象变化与其前稳态动力学定性相关。

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