首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Hydrophobic ion interaction on Na~+ activation and dephosphorylation of reconstituted Na~+,K~+-ATPase
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Hydrophobic ion interaction on Na~+ activation and dephosphorylation of reconstituted Na~+,K~+-ATPase

机译:Na〜+活化与重构Na +,K〜+ -ATPase的疏水离子相互作用及抗磷酸化

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摘要

In liposomes with reconstituted shark Na+,K+-ATPase an uncoupled Na+-efflux and a Na+/Na+ exchange can be induced on inside-out oriented pumps by the addition of external (cytoplasmic) Na+ and MgATP to liposomes that either do not contain Na+ (and other alkali cations), or include 130 mM Na+ internally (extracellular). Both modes of exchange are electrogenic and accompanied by a net hydrolysis of ATP. The coupling ratio of positive net charges translocated per ATP split is found to be close to 3:1 and 1:1, respectively, for the two modes of exchange reactions at pH 7.0. By addition of the hydrophobic anion tetraphenylboron (TPB?), which imposes a negative electrostatic membrane potential inside the lipid bilayer, the ATP hydrolysis accompanying uncoupled Na+ efflux is increased with increasing TPB? concentrations. Cholesterol which increases the inner positive dipole potential of the bilayer counteracted this activation by TPB? of uncoupled Na+ efflux. Using the structural analog tetraphenylphosphonium (TPP+), which elicits an inside positive membrane potential, ATP hydrolysis accompanying uncoupled Na+-efflux is decreased. The rate of dephosphorylation in the absence of extracellular alkali cations was affected in a similar manner, whereas the dephosphorylation in the presence of extracellular Na+ inducing Na+/Na+ exchange was unaffected by the hydrophobic ions. In both modes of exchange the phosphorylation reaction was independent of the presence of hydrophobic ions. The hydrophobic ions affected the apparent affinity for cytoplasmic Na+, indicating that binding of cytoplasmic Na+ may involve the migration of cations to binding sites through a shallow cytoplasmic access channel. The results are in accordance with the simple electrostatic model for charge translocation in which two negative charges in the cytoplasmic binding domain of the Na+,K+-ATPase co-migrate during cation transport.
机译:在具有重构的鲨鱼Na +的脂质体中,通过添加外部(细胞质)Na +和MgATP至脂质体,可以在内部出取向泵上诱导Na + -Axfallux和Na + / Na +交换的脂质体。和其他碱阳离子),或内部包含130mM Na +(细胞外)。两种交换模式都是带电的,并伴随着ATP的净水解。发现每ATP分裂的正净电荷的偶联比分别接近3:1和1:1,用于PH 7.0的两种交换反应模式。通过加入疏水性阴离子Tetraphenylboron(TPBα),其在脂质双层内部施加负静电膜电位,随着TPB的增加而伴随着未偶联Na + Efflux的ATP水解?浓度。胆固醇增加双层的内部正偶极电位的胆固醇通过TPB抵消了这种激活?未替换的Na + Efflux。使用具有引发内部正膜电位的结构模拟四苯基鏻(TPP +),伴随着未偶联Na + -Ufflux的ATP水解。在没有细胞外碱阳离子的情况下,脱磷的速率以类似的方式影响,而细胞外Na +诱导Na + / Na +交换存在的去磷酸化不受疏水离子的影响。在两种交换模式中,磷酸化反应与疏水离子的存在无关。疏水离子影响了对细胞质Na +的表观亲和力,表明细胞质Na +的结合可以通过浅细胞质接入通道涉及阳离子迁移到结合位点。结果符合电荷易位的简单静电模型,其中在阳离子转运期间Na +,K + -ATP酶的细胞质结合结构域中的两个负电荷。

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