Blostein R, Dunbar L, Mense M, Scanzano R, Wilczynska A, Caplan M J
Departments of Medicine and Biochemistry, McGill University, Montreal, Quebec H3G 1A4 Canada.
J Biol Chem. 1999 Jun 25;274(26):18374-81. doi: 10.1074/jbc.274.26.18374.
Chimeras of the catalytic subunits of the gastric H,K-ATPase and Na, K-ATPase were constructed and expressed in LLC-PK1 cells. The chimeras included the following: (i) a control, H85N (the first 85 residues comprising the cytoplasmic N terminus of Na,K-ATPase replaced by the analogous region of H,K-ATPase); (ii) H85N/H356-519N (the N-terminal half of the cytoplasmic M4-M5 loop also replaced); and (iii) H519N (the entire front half replaced). The latter two replacements confer a decrease in apparent affinity for extracellular K+. The 356-519 domain and, to a greater extent, the H519N replacement confer increased apparent selectivity for protons relative to Na+ at cytoplasmic sites as shown by the persistence of K+ influx when the proton concentration is increased and the Na+ concentration decreased. The pH and K+ dependence of ouabain-inhibitable ATPase of membranes derived from the transfected cells indicate that the H519N and, to a lesser extent, the H356-519N substitution decrease the effectiveness of K+ to compete for protons at putative cytoplasmic H+ activation sites. Notable pH-independent behavior of H85N/H356-519N at low Na+ suggests that as pH is decreased, Na+/K+ exchange is replaced largely by (Na+ + H+)/K+ exchange. With H519N, the pH and Na+ dependence of pump and ATPase activities suggest relatively active H+/K+ exchange even at neutral pH. Overall, this study provides evidence for important roles in cation selectivity for both the N-terminal half of the M4-M5 loop and the adjacent transmembrane helice(s).
构建了胃H⁺,K⁺ - ATP酶和Na⁺,K⁺ - ATP酶催化亚基的嵌合体,并在LLC - PK1细胞中表达。这些嵌合体包括:(i)一个对照,H85N(Na⁺,K⁺ - ATP酶细胞质N端的前85个残基被H⁺,K⁺ - ATP酶的类似区域取代);(ii)H85N/H356 - 519N(细胞质M4 - M5环的N端一半也被取代);以及(iii)H519N(整个前半部分被取代)。后两种取代导致对细胞外K⁺的表观亲和力降低。如当质子浓度增加而Na⁺浓度降低时K⁺流入的持续存在所示,356 - 519结构域以及在更大程度上H519N取代赋予了在细胞质位点对质子相对于Na⁺更高的表观选择性。来自转染细胞的膜上哇巴因抑制性ATP酶的pH和K⁺依赖性表明,H519N以及在较小程度上H356 - 519N取代降低了K⁺在假定的细胞质H⁺激活位点竞争质子的有效性。H85N/H356 - 519N在低Na⁺时显著的pH非依赖性行为表明,随着pH降低,Na⁺/K⁺交换在很大程度上被(Na⁺ + H⁺)/K⁺交换所取代。对于H519N,泵和ATP酶活性的pH和Na⁺依赖性表明即使在中性pH下也存在相对活跃的H⁺/K⁺交换。总体而言,本研究为M4 - M5环的N端一半和相邻跨膜螺旋在阳离子选择性中起重要作用提供了证据。