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球状蛋白质的折叠机制。金黄色葡萄球菌青霉素酶构象转变的平衡与动力学,涉及中间构象状态。

The mechanism of folding of globular proteins. Equilibria and kinetics of conformational transitions of penicillinase from Staphylococcus aureus involving a state of intermediate conformation.

作者信息

Robson B, Pain R H

出版信息

Biochem J. 1976 May 1;155(2):331-44. doi: 10.1042/bj1550331.

Abstract
  1. The thermodynamically reversible unfolding and refolding of penicillinase between the native and fully unfolded states were followed by using guanidinium chloride as denaturant. 2. The equilibria, studied by optical rotation, u.v. absorption, viscosity and enzyme activity, show the presence of a state of intermediate conformation, termed state H, which is stable at 20 degrees C in 0.8 M-guanidinium chloride. 3. The physical properties of this state show that it is slightly expanded with an intrinsic viscosity of 8 ml-g-1, that the 13 tyrosine residues, which are distributed through the primary sequence, are maximally exposed to the solvent and that the helix content is the same as that of the native state. 4. The kinetics of the transition between the native state, state H and the fully unfolded state were followed by u.v. absorption and by optical rotation. They are interpreted as showing that state H lies on the folding pathway between the native and fully unfolded states. 5. The transition between the native state and state H exhibits monophasic unfolding kinetics and biphasic refolding kinetics. This indicates that there must be at least two intermediate states in this process, at least one of which lies on the folding pathway which may also involve cul-de-sac paths. 6. The results are discussed in terms of a mechanism involving rapid stabilization of nucleation regions in a moderately compact but internally solvated structure, with 'native format' [Anfinsen (1973) Science 181, 233-230] secondary structure stabilized by tertiary interaction. The final and rate-limiting step in refolding involves shuffling of these structural elements into the native state. 7. This model is discussed in relation to folding in vivo.
摘要
  1. 以氯化胍作为变性剂,研究了青霉素酶在天然态和完全去折叠态之间的热力学可逆去折叠和重折叠过程。2. 通过旋光、紫外吸收、黏度和酶活性研究平衡,结果表明存在一种中间构象状态,称为状态H,它在0.8M氯化胍中于20℃稳定。3. 该状态的物理性质表明它略有伸展,特性黏度为8ml·g⁻¹,分布在一级序列中的13个酪氨酸残基最大程度地暴露于溶剂中,且螺旋含量与天然态相同。4. 通过紫外吸收和旋光跟踪天然态、状态H和完全去折叠态之间转变的动力学。其解释为状态H位于天然态和完全去折叠态之间的折叠途径上。5. 天然态和状态H之间的转变呈现单相去折叠动力学和双相重折叠动力学。这表明在此过程中必须至少有两个中间状态,其中至少一个位于折叠途径上,该途径也可能涉及死胡同路径。6. 根据一种机制对结果进行了讨论,该机制涉及在中等紧密但内部溶剂化的结构中快速稳定成核区域,“天然形式”[安芬森(1973年)《科学》181, 233 - 230]二级结构通过三级相互作用得以稳定。重折叠的最终限速步骤涉及将这些结构元件改组为天然态。7. 讨论了该模型与体内折叠的关系。

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