Williams T C, Corson D C, Oikawa K, McCubbin W D, Kay C M, Sykes B D
Biochemistry. 1986 Apr 8;25(7):1835-46. doi: 10.1021/bi00355a057.
Lacking the extraordinary thermal stability of its metal-bound forms, apo-alpha-parvalbumin from rat muscle assumes two distinct conformations in aqueous solution. At 25 degrees C, its highly structured form predominates (Keq = 5.7; delta G degree = -4.3 kJ X mol-1); as deduced from both 1H NMR and circular dichroism (CD) spectroscopy, this conformation is exceedingly similar to those of its Mg(II)-, Ca(II)-, and Lu(III)-bound forms. The temperature dependences of several well-resolved aromatic and upfield-shifted methyl 1H NMR resonances and several CD bands indicate that the native, highly helical structure of rat apo-alpha-parvalbumin is unfolded by a concerted mechanism, showing no indication of partially structured intermediates. The melting temperature, TM, of rat apo-alpha-parvalbumin is 35 +/- 0.5 degrees C as calculated by both spectroscopic techniques. By 45 degrees C, rat apo-alpha-parvalbumin unfolds entirely, losing the tertiary structure that characterizes its folded form: not only are the ring-current-shifted aromatic and methyl 1H NMR resonances leveled, but the 262- and 269-nm CD bands are also severely reduced. As judged by the decrease in the negative ellipticity of the 222-nm CD band, this less-structured form of rat apo-alpha-parvalbumin shows an approximate 50% loss in apparent alpha-helical content compared to its folded state. Several changes in the 1H NMR spectrum of rat apo-alpha-parvalbumin were exceptionally informative probes of the specific conformational changes that accompany metal ion binding and metal ion exchange. In particular, the line intensities of the ortho proton resonance of Phe-47, the unassigned downfield-shifted alpha-CH resonances from the beta-sheet contacts between the metal-binding loops, the C2H resonance of His-48, and the epsilon-CH3 resonance of an unassigned Met residue were monitored as a function of added metal to determine the stability constants of several metal ion-parvalbumin complexes. We conclude that Mg(II) binds to the CD and EF sites independently, its affinity for the EF site being almost twice that for the CD site. Mg(II)----Ca(II) exchange showed that the CD-site Mg(II) is displaced first, in contrast to Lu(III)'s preferential displacement of the EF-site Ca(II) as determined from the Ca(II)----Lu(III) exchange experiments.(ABSTRACT TRUNCATED AT 400 WORDS)
大鼠肌肉中的脱辅基α-小清蛋白缺乏与金属结合形式所具有的非凡热稳定性,在水溶液中呈现两种不同的构象。在25℃时,其高度结构化的形式占主导(平衡常数Keq = 5.7;标准自由能变化ΔG° = -4.3 kJ·mol⁻¹);从¹H NMR和圆二色性(CD)光谱推断,这种构象与其与Mg(II)、Ca(II)和Lu(III)结合形式的构象极为相似。几个分辨良好的芳香族和高场位移甲基¹H NMR共振以及几个CD谱带的温度依赖性表明,大鼠脱辅基α-小清蛋白的天然高度螺旋结构通过协同机制展开,未显示出部分结构化中间体的迹象。通过两种光谱技术计算,大鼠脱辅基α-小清蛋白的解链温度Tm为35±0.5℃。到45℃时,大鼠脱辅基α-小清蛋白完全展开,失去了表征其折叠形式的三级结构:不仅环电流位移的芳香族和甲基¹H NMR共振消失,262纳米和269纳米的CD谱带也大幅降低。根据222纳米CD谱带负椭圆率的降低判断,这种大鼠脱辅基α-小清蛋白结构较少的形式与其折叠状态相比,表观α-螺旋含量大约损失了50%。大鼠脱辅基α-小清蛋白¹H NMR谱中的几个变化是伴随金属离子结合和金属离子交换的特定构象变化的极具信息量的探针。特别是,监测了Phe-47邻位质子共振峰的线强度、来自金属结合环之间β-折叠接触的未归属的高场位移α-CH共振峰、His-48的C2H共振峰以及一个未归属的Met残基的ε-CH₃共振峰随添加金属的变化情况,以确定几种金属离子-小清蛋白复合物的稳定常数。我们得出结论,Mg(II)独立地结合到CD和EF位点,其对EF位点的亲和力几乎是对CD位点的两倍。Mg(II)----Ca(II)交换表明,CD位点上结合的Mg(II)首先被取代,这与从Ca(II)----Lu(III)交换实验确定的Lu(III)优先取代EF位点上的Ca(II)形成对比。(摘要截短至400字)