Vilsen B, Andersen J P
Department of Physiology, University of Aarhus, Denmark.
Biochemistry. 1998 Aug 4;37(31):10961-71. doi: 10.1021/bi9802925.
The functional consequences of mutations Glu329 --> Gln in the Na+,K+-ATPase and Glu309 --> Asp in the sarco(endo)plasmic reticulum Ca2+-ATPase were analyzed and compared. Relative to the wild-type Na+,K+-ATPase, the Glu329 --> Gln mutant exhibited a 20-fold reduction in the apparent K+ affinity determined by titration of the rate of ATP hydrolysis at 50 microM ATP, and the rate of release of occluded K+ or Rb+ to the cytoplasmic side of the membrane was up to 30-fold enhanced by the mutation, as measured in kinetic studies of the phosphorylation by ATP of enzyme equilibrated with K+ or Rb+. The apparent affinity for extracellular K+ was 12-fold reduced by the Glu329 --> Gln mutation, as determined by K+ titration of the dephosphorylation. The maximum rate of phosphorylation by ATP of the Na+ form of the enzyme was reduced more than 2-fold by the mutation, but this effect could be counteracted by stabilizing Na+ occlusion with oligomycin. Similar studies on the Glu309 --> Asp mutant of the Ca2+-ATPase showed that the maximum rate of phosphorylation of the Ca2+ form was 8-9-fold reduced relative to that of the wild-type Ca2+-ATPase, and no Ca2+ occlusion could be detected in the mutant. Dephosphorylation of the phosphoenzyme intermediate formed with Pi was blocked in the Ca2+-ATPase mutant. The sensitivity to inhibition by thapsigargin, which binds selectively to the putative proton-occluded form of the Ca2+-ATPase, was reduced almost 300-fold in the mutant at neutral pH, but only 3-4-fold at pH 6.0. These data indicate that the mutations destabilize the occluded enzyme forms and interfere with cation binding from the extracytoplasmic side as well as with the gating process at the cytoplasmic entrance to the cation occlusion pocket.
分析并比较了钠钾ATP酶中Glu329突变为Gln以及肌浆(内质)网钙ATP酶中Glu309突变为Asp的功能后果。相对于野生型钠钾ATP酶,Glu329突变为Gln的突变体在50微摩尔ATP浓度下通过滴定ATP水解速率测定的表观钾亲和力降低了20倍,并且在与钾或铷平衡的酶的ATP磷酸化动力学研究中测量发现,突变使封闭在膜胞质侧的钾或铷的释放速率提高了30倍。通过去磷酸化的钾滴定测定,Glu329突变为Gln的突变使细胞外钾的表观亲和力降低了12倍。该突变使酶的钠形式被ATP磷酸化的最大速率降低了2倍多,但这种影响可通过寡霉素稳定钠封闭来抵消。对钙ATP酶的Glu309突变为Asp突变体的类似研究表明,相对于野生型钙ATP酶,钙形式的最大磷酸化速率降低了8至9倍,并且在突变体中未检测到钙封闭。在钙ATP酶突变体中,由无机磷酸形成的磷酸酶中间体的去磷酸化被阻断。在中性pH下,对毒胡萝卜素抑制的敏感性在突变体中降低了近300倍,毒胡萝卜素选择性结合钙ATP酶的假定质子封闭形式;而在pH 6.0时仅降低了3至4倍。这些数据表明,这些突变使封闭的酶形式不稳定,并干扰了阳离子从胞外一侧的结合以及阳离子封闭口袋胞质入口处的门控过程。