Morozov V N, Morozova T Ia
Mol Biol (Mosk). 1983 May-Jun;17(3):577-86.
The purpose of this paper is to present a new approach to the study of mechanical properties of globular proteins and to summarize some of our results. The approach is based on the analysis of mechanical, viscoelastic properties of a protein monocrystal which is used as a probe of mechanical properties of a protein molecule. As a first rough approximation a protein molecule can be considered as a material resembling molecular crystals and glass-like polymers with the Young's modulus E = 2 - 10 GN . m-2. More detailed information concerning the anisotropy of elasticity and that of inhibitor effect strongly suggests that the lysozyme molecule is a construction having a special hinge-bending degree of freedom. The force constant estimated from our data for this degree of freedom is (0,4-1) . 10(13) erg . rad-2 . mol-1.
本文的目的是提出一种研究球状蛋白质力学性质的新方法,并总结我们的一些研究结果。该方法基于对蛋白质单晶的力学、粘弹性性质的分析,蛋白质单晶被用作蛋白质分子力学性质的探针。作为初步的粗略近似,蛋白质分子可被视为一种类似于分子晶体和玻璃状聚合物的材料,其杨氏模量E = 2 - 10 GN·m-2。关于弹性各向异性和抑制剂效应各向异性的更详细信息有力地表明,溶菌酶分子是一种具有特殊铰链弯曲自由度的结构。根据我们的数据估算,该自由度的力常数为(0.4 - 1)·1013尔格·弧度-2·摩尔-1。