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溶菌酶和高铁细胞色素c在水/乙二醇溶液中的介电行为。

Dielectric behavior of lysozyme and ferricytochrome-c in water/ethylene-glycol solutions.

作者信息

Bonincontro A, Cinelli S, Onori G, Stravato A

机构信息

INFM-Dipartimento di Fisica, Università La Sapienza, I-00185 Rome, Italy.

出版信息

Biophys J. 2004 Feb;86(2):1118-23. doi: 10.1016/S0006-3495(04)74186-7.

Abstract

This work deals with a dielectric study at radio frequencies of the influence at room temperature of two organic molecules, known as cryo-protectants, ethylene-glycol and glycerol, on conformational and dynamic properties of two model proteins, lysozyme (lys) from chicken egg-white and ferricytochrome-c (cyt-c) from horse heart. Cyt-c is a compact globular protein whereas lys is composed of two structural domains, separated by the active site cleft. Measurements were carried out at the fixed temperature of 20 degrees C varying the concentration of the cosolvent up to 90% w/w. From the analysis of the dielectric relaxation of the protein solution, the effective hydrodynamic radius and the electric dipole moment of the protein were calculated as a function of the cosolvent concentration. The data show that glycerol does not modify significantly the conformation of both proteins and cyt-c is also stable in the presence of ethylene-glycol. On the contrary ethylene-glycol strongly affects the dielectric response of lysozyme denoting a specific effect on its conformation and dynamics. The data are coherently interpreted hypothesizing that glycol molecule wedges between and separates the two domains of lys making them rotationally independent.

摘要

本研究探讨了在室温下,两种被称为低温保护剂的有机分子——乙二醇和甘油,对两种模型蛋白(即鸡蛋白溶菌酶(lys)和马心细胞色素c(cyt-c))的构象和动力学性质的影响,该研究采用射频介电研究方法。细胞色素c是一种紧密的球状蛋白,而溶菌酶由两个结构域组成,由活性位点裂隙分隔。实验在20℃的固定温度下进行,将共溶剂浓度变化至90% w/w。通过对蛋白质溶液介电弛豫的分析,计算了蛋白质的有效流体动力学半径和电偶极矩作为共溶剂浓度的函数。数据表明,甘油不会显著改变两种蛋白质的构象,并且细胞色素c在乙二醇存在下也很稳定。相反,乙二醇强烈影响溶菌酶的介电响应,表明对其构象和动力学有特定影响。通过假设乙二醇分子楔入并分离溶菌酶的两个结构域,使它们能够独立旋转,这些数据得到了连贯的解释。

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本文引用的文献

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Rotational and translational dynamics of lysozyme in water-glycerol solution.溶菌酶在水-甘油溶液中的旋转和平移动力学
Colloids Surf B Biointerfaces. 2001 Aug;21(4):311-316. doi: 10.1016/s0927-7765(00)00214-9.
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Cryosalts: suppression of ice formation in macromolecular crystallography.冷冻盐:抑制大分子晶体学中的冰晶形成
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