Dempsey C E
Biochemistry. 1986 Jul 1;25(13):3904-11. doi: 10.1021/bi00361a025.
The kinetics of hydrogen exchange of the 11 most protected backbone amides of bee venom apamin have been measured between pH 1 and pH 8.5 by using time-resolved and saturation-transfer NMR spectroscopy. The five amides most protected from base-catalyzed exchange, those of residues 5 and 12-15, show highly correlated exchange behavior in the base-catalyzed regime. It is proposed that the intramolecular hydrogen bonds stabilizing these amides define a stable cooperative unit of secondary structure in apamin (a C-terminal helix and an N-terminal beta-turn). This conformational unit is further stabilized (by 5-6 kJ mol-1) on titration of the Glu-7 side-chain carboxyl group. The relative contributions of specific intramolecular interactions to this conformational stabilization are estimated. The pHminima in the pH-dependent single amide exchange curves are compared with values predicted by correcting for sequence-dependent contributions to amide exchange rates [Molday, R. S., Englander, S. W., & Kallen, R. G. (1972) Biochemistry 11, 150-158]. The lack of correlation suggests that the "open" conformers from which amide exchange occurs are nonrandom. This conclusion is dependent on the assumption that acid-catalyzed exchange occurs via N-protonation so that residual conformational effects on exchange rates in the open conformers will affect acid- and base-catalyzed rates in approximately equal and opposite ways. A strong correlation between the measured pHminima and the amide proton chemical shifts is observed, however, and this may be most easily accommodated if acid-catalyzed exchange occurs by the imidic acid mechanism (via amide O-protonation).
利用时间分辨和饱和转移核磁共振光谱法,在pH值1至8.5的范围内测定了蜂毒肽11个受保护程度最高的主链酰胺的氢交换动力学。5个最不易受碱催化交换影响的酰胺,即残基5以及12 - 15的酰胺,在碱催化体系中表现出高度相关的交换行为。有人提出,稳定这些酰胺的分子内氢键定义了蜂毒肽(一个C端螺旋和一个N端β转角)中二级结构的稳定协同单元。在滴定Glu - 7侧链羧基时,这个构象单元会进一步稳定(稳定5 - 6 kJ·mol⁻¹)。估算了特定分子内相互作用对这种构象稳定化的相对贡献。将pH依赖的单个酰胺交换曲线中的pH最小值与通过校正酰胺交换速率的序列依赖性贡献所预测的值进行了比较[莫尔迪,R. S.,英格兰德,S. W.,& 卡伦,R. G.(1972年)《生物化学》11,150 - 158]。缺乏相关性表明发生酰胺交换的“开放”构象是非随机的。这个结论依赖于酸催化交换通过N质子化发生的假设,这样开放构象中对交换速率的残余构象效应将以大致相等且相反的方式影响酸催化和碱催化速率。然而,观察到所测pH最小值与酰胺质子化学位移之间存在很强的相关性,如果酸催化交换通过亚氨酸机制(通过酰胺O质子化)发生,这可能最容易得到解释。