首页> 美国卫生研究院文献>Biophysical Journal >Fast events in protein folding: structural volume changes accompanying the early events in the N--I transition of apomyoglobin induced by ultrafast pH jump.
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Fast events in protein folding: structural volume changes accompanying the early events in the N--I transition of apomyoglobin induced by ultrafast pH jump.

机译:蛋白质折叠中的快速事件:伴随超pH跃迁引起的肌红蛋白从N→I过渡的早期事件结构体积变化。

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摘要

Ultrafast, laser-induced pH jump with time-resolved photoacoustic detection has been used to investigate the early protonation steps leading to the formation of the compact acid intermediate (I) of apomyoglobin (ApoMb). When ApoMb is in its native state (N) at pH 7.0, rapid acidification induced by a laser pulse leads to two parallel protonation processes. One reaction can be attributed to the binding of protons to the imidazole rings of His24 and His119. Reaction with imidazole leads to an unusually large contraction of -82 +/- 3 ml/mol, an enthalpy change of 8 +/- 1 kcal/mol, and an apparent bimolecular rate constant of (0.77 +/- 0.03) x 10(10) M(-1) s(-1). Our experiments evidence a rate-limiting step for this process at high ApoMb concentrations, characterized by a value of (0. 60 +/- 0.07) x 10(6) s(-1). The second protonation reaction at pH 7. 0 can be attributed to neutralization of carboxylate groups and is accompanied by an apparent expansion of 3.4 +/- 0.2 ml/mol, occurring with an apparent bimolecular rate constant of (1.25 +/- 0.02) x 10(11) M(-1) s(-1), and a reaction enthalpy of about 2 kcal/mol. The activation energy for the processes associated with the protonation of His24 and His119 is 16.2 +/- 0.9 kcal/mol, whereas that for the neutralization of carboxylates is 9.2 +/- 0.9 kcal/mol. At pH 4.5 ApoMb is in a partially unfolded state (I) and rapid acidification experiments evidence only the process assigned to carboxylate protonation. The unusually large contraction and the high energetic barrier observed at pH 7.0 for the protonation of the His residues suggests that the formation of the compact acid intermediate involves a rate-limiting step after protonation.
机译:具有时间分辨光声检测功能的超快激光诱导的pH跃迁已用于研究导致质子蛋白(ApoMb)的致密酸中间体(I)形成的早期质子化步骤。当ApoMb在pH 7.0处于其原始状态(N)时,由激光脉冲引起的快速酸化导致两个平行的质子化过程。一个反应可以归因于质子与His24和His119的咪唑环的结合。与咪唑反应会导致-82 +/- 3 ml / mol的异常大收缩,8 +/- 1 kcal / mol的焓变以及(0.77 +/- 0.03)x 10( 10)M(-1)s(-1)。我们的实验证明了在高ApoMb浓度下该过程的限速步骤,其特征在于值为(0. 60 +/- 0.07)x 10(6)s(-1)。 pH为7时的第二次质子化反应可以归因于羧酸酯基团的中和,并伴随着3.4 +/- 0.2 ml / mol的表观膨胀,表观双分子速率常数为(1.25 +/- 0.02)x 10(11)M(-1)s(-1)和约2 kcal / mol的反应焓。与His24和His119的质子化相关的过程的活化能为16.2 +/- 0.9kcal / mol,而中和羧酸盐的活化能为9.2 +/- 0.9kcal / mol。在pH 4.5时,ApoMb处于部分展开状态(I),快速酸化实验仅证明与羧酸酯质子化有关的过程。在pH 7.0下观察到的His残基的质子化过程中异常大的收缩和高能垒表明,致密酸中间体的形成涉及质子化后的限速步骤。

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