Waggoner Jason R, Huffman Jamie, Froehlich Jeffrey P, Mahaney James E
Department of Pharmacology and Cell Biophysics, University of Cincinnati College of Medicine, Cincinnati, Ohio 45267, USA.
Biochemistry. 2007 Feb 20;46(7):1999-2009. doi: 10.1021/bi061365k. Epub 2007 Jan 30.
We have used steady-state fluorescence spectroscopy in combination with enzyme kinetic assays to test the hypothesis that phospholamban (PLB) stabilizes the Ca-ATPase in the E2 intermediate state. The cardiac muscle Ca-ATPase (SERCA2a) isoform was expressed either alone or coexpressed with PLB in High-Five insect cells and was isolated as insect cell microsomes. Fluorescence studies of the Ca-ATPase covalently labeled with the probe 5-(2-((iodoacetyl)amino)ethyl)aminonaphthalene-1-sulfonic acid showed that PLB decreased the amplitude of the Ca-ATPase E2 --> E1 conformational transition by 45 +/- 3% and shifted the [Ca2+] dependence of the transition to higher Ca2+ levels (DeltaKCa = 230 nM), similar to the effect of PLB on Ca-ATPase activity. Similarly, PLB decreased the amplitude of Ca-ATPase phosphorylation by inorganic phosphate (Pi) by 55 +/- 2% and decreased slightly the affinity for Pi (DeltaK0.5 = 70 microM). However, PLB did not affect the Ca2+-dependent inhibition of Ca-ATPase phosphorylation by Pi. Finally, PLB decreased Ca-ATPase sensitivity to vanadate, increasing the IC50 value by 300 nM. The results suggest that PLB binding to Ca-ATPase stabilizes the enzyme in a conformation distinct from E2, decreasing the number of enzymes in the E2 state capable of undergoing ligand-dependent conformational changes involving the Ca-free E2 intermediate. The inability of conformation-specific ligands to fully convert this E2-like state into E1 or E2 implies that these states are not in a simple equilibrium relationship.
我们结合酶动力学分析,运用稳态荧光光谱法来验证磷蛋白(PLB)使Ca-ATP酶稳定于E2中间状态这一假说。心肌Ca-ATP酶(SERCA2a)亚型在High-Five昆虫细胞中单独表达或与PLB共表达,并作为昆虫细胞微粒体分离出来。用探针5-(2-((碘乙酰基)氨基)乙基)氨基萘-1-磺酸共价标记的Ca-ATP酶的荧光研究表明,PLB使Ca-ATP酶E2→E1构象转变的幅度降低了45±3%,并将该转变的[Ca2+]依赖性转移至更高的Ca2+水平(ΔKCa = 230 nM),这与PLB对Ca-ATP酶活性的影响相似。同样,PLB使无机磷酸(Pi)介导的Ca-ATP酶磷酸化幅度降低了55±2%,并略微降低了对Pi的亲和力(ΔK0.5 = 70 μM)。然而,PLB并不影响Pi对Ca-ATP酶磷酸化的Ca2+依赖性抑制作用。最后,PLB降低了Ca-ATP酶对钒酸盐的敏感性,使IC50值增加了300 nM。结果表明,PLB与Ca-ATP酶的结合使该酶稳定于一种不同于E2的构象,减少了处于E2状态且能够经历涉及无Ca2+ E2中间体的配体依赖性构象变化的酶的数量。构象特异性配体无法将这种类似E2的状态完全转化为E1或E2,这意味着这些状态并非处于简单的平衡关系。