Peinelt Christine, Apell Hans-Jürgen
Department of Biology, University of Konstanz, 78457 Konstanz, Germany.
Biophys J. 2002 Jan;82(1 Pt 1):170-81. doi: 10.1016/S0006-3495(02)75384-8.
Electrochromic styryl dyes were used to investigate mutually antagonistic effects of Ca(2+) and H(+) on binding of the other ion in the E(1) and P-E(2) states of the SR Ca-ATPase. On the cytoplasmic side of the protein in the absence of Mg(2+) a strictly competitive binding sequence, H(2)E(1) <==> HE(1) <==> E(1) <==> CaE(1) <==> Ca(2)E(1), was found with two Ca(2+) ions bound cooperatively. The apparent equilibrium dissociation constants were in the order of K(1/2)(2 Ca) = 34 nM, K(1/2)(H) = 1 nM and K(1/2)(H(2)) = 1.32 microM. Up to 2 Mg(2+) ions were also able to enter the binding sites electrogenically and to compete with the transported substrate ions (K(1/2)(Mg) = 165 microM, K(1/2)(Mg(2)) = 7.4 mM). In the P-E(2) state, with binding sites facing the lumen of the sarcoplasmatic reticulum, the measured concentration dependence of Ca(2+) and H(+) binding could be described satisfactorily only with a branched reaction scheme in which a mixed state, P-E(2)CaH, exists. From numerical simulations, equilibrium dissociation constants could be determined for Ca(2+) (0.4 mM and 25 mM) and H(+) (2 microM and 10 microM). These simulations reproduced all observed antagonistic concentration dependences. The comparison of the dielectric ion binding in the E(1) and P-E(2) conformations indicates that the transition between both conformations is accompanied by a shift of their (dielectric) position.
使用电致变色苯乙烯基染料研究了Ca(2+)和H(+)在肌浆网Ca-ATP酶的E(1)和P-E(2)状态下对另一种离子结合的相互拮抗作用。在没有Mg(2+)的情况下,在蛋白质的细胞质侧发现了一个严格竞争的结合序列,H(2)E(1) <==> HE(1) <==> E(1) <==> CaE(1) <==> Ca(2)E(1),有两个Ca(2+)离子协同结合。表观平衡解离常数的顺序为K(1/2)(2 Ca) = 34 nM,K(1/2)(H) = 1 nM和K(1/2)(H(2)) = 1.32 microM。多达2个Mg(2+)离子也能够以电生方式进入结合位点并与转运的底物离子竞争(K(1/2)(Mg) = 165 microM,K(1/2)(Mg(2)) = 7.4 mM)。在P-E(2)状态下,结合位点面向肌浆网腔,只有在存在混合状态P-E(2)CaH的分支反应方案中,才能令人满意地描述所测量的Ca(2+)和H(+)结合的浓度依赖性。通过数值模拟,可以确定Ca(2+)(0.4 mM和25 mM)和H(+)(2 microM和10 microM)的平衡解离常数。这些模拟再现了所有观察到的拮抗浓度依赖性。E(1)和P-E(2)构象中介电离子结合的比较表明,两种构象之间的转变伴随着它们(介电)位置的移动。