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马细胞色素 C 酸变性熔球体的热力学和结构性质。

Thermodynamic and structural properties of the acid molten globule state of horse cytochrome C.

机构信息

Department of Bioengineering, Nagaoka University of Technology, 1603-1 Kamitomioka, Nagaoka, Niigata 940-2188, Japan.

出版信息

Biochemistry. 2011 Apr 19;50(15):3116-26. doi: 10.1021/bi101806b. Epub 2011 Mar 25.

Abstract

To understand the stabilization, folding, and functional mechanisms of proteins, it is very important to understand the structural and thermodynamic properties of the molten globule state. In this study, the global structure of the acid molten globule state, which we call MG1, of horse cytochrome c at low pH and high salt concentrations was evaluated by solution X-ray scattering (SXS), dynamic light scattering, and circular dichroism measurements. MG1 was globular and slightly (3%) larger than the native state, N. Calorimetric methods, such as differential scanning calorimetry and isothermal acid-titration calorimetry, were used to evaluate the thermodynamic parameters in the transitions of N to MG1 and MG1 to denatured state D of horse cytochrome c. The heat capacity change, ΔC(p), in the N-to-MG1 transition was determined to be 2.56 kJ K(-1) mol(-1), indicating the increase in the level of hydration in the MG1 state. Moreover, the intermediate state on the thermal N-to-D transition of horse cytochrome c at pH 4 under low-salt conditions showed the same structural and thermodynamic properties of the MG1 state in both SXS and calorimetric measurements. The Gibbs free energy changes (ΔG) for the N-to-MG1 and N-to-D transitions at 15 °C were 10.9 and 42.2 kJ mol(-1), respectively.

摘要

为了理解蛋白质的稳定、折叠和功能机制,了解无规卷曲状态的结构和热力学性质是非常重要的。在这项研究中,通过溶液 X 射线散射(SXS)、动态光散射和圆二色性测量评估了在低 pH 和高盐浓度下马细胞色素 c 的酸无规卷曲状态(我们称之为 MG1)的整体结构。MG1 是球形的,比天然状态 N 略大(3%)。差示扫描量热法和等温酸滴定量热法等量热法用于评估 N 到 MG1 以及 MG1 到马细胞色素 c 的变性状态 D 的转变中的热力学参数。确定 N 到 MG1 转变中的热容变化 ΔC(p)为 2.56 kJ K(-1) mol(-1),表明 MG1 状态下的水合水平增加。此外,在低盐条件下 pH 4 下马细胞色素 c 的热 N 到 D 转变的中间状态在 SXS 和量热测量中均表现出与 MG1 状态相同的结构和热力学性质。在 15°C 下,N 到 MG1 和 N 到 D 转变的吉布斯自由能变化(ΔG)分别为 10.9 和 42.2 kJ mol(-1)。

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