Jääskeläinen S, Verma C S, Hubbard R E, Linko P, Caves L S
Protein Structure Research Group, Department of Chemistry, University of York, Heslington, United Kingdom.
Protein Sci. 1998 Jun;7(6):1359-67. doi: 10.1002/pro.5560070612.
The interfacial activation of Rhizomucor miehei lipase (RmL) involves the motion of an alpha-helical region (residues 82-96) which acts as a "lid" over the active site of the enzyme, undergoing a displacement from a "closed" to an "open" conformation upon binding of substrate. Normal mode analyses performed in both low and high dielectric media reveal that low-frequency vibrational modes contribute significantly to the conformational transition between the closed and open conformations. In these modes, the lid displacement is coupled to local motions of active site loops as well as global breathing motions. Atomic fluctuations of the first hinge of the lid (residues 83-84) are substantially larger in the low dielectric medium than in the high dielectric medium. Our results also suggest that electrostatic interactions of Arg86 play an important role in terms of both the intrinsic stability of the lid and its displacement, through enhancement of hinge mobility in a high dielectric medium. Additional calculations demonstrate that the observed patterns of atomic fluctuations are an intrinsic feature of the protein structure and not dependent on the nature of specific energy minima.
米黑根毛霉脂肪酶(RmL)的界面激活涉及一个α-螺旋区域(残基82 - 96)的运动,该区域作为酶活性位点上的“盖子”,在底物结合时从“关闭”构象转变为“开放”构象。在低介电和高介电介质中进行的正常模式分析表明,低频振动模式对关闭和开放构象之间的构象转变有显著贡献。在这些模式中,盖子的位移与活性位点环的局部运动以及整体呼吸运动相关联。盖子第一个铰链(残基83 - 84)的原子波动在低介电介质中比在高介电介质中要大得多。我们的结果还表明,通过增强高介电介质中的铰链流动性,Arg86的静电相互作用在盖子的固有稳定性及其位移方面都起着重要作用。额外的计算表明,观察到的原子波动模式是蛋白质结构的固有特征,并不依赖于特定能量最小值的性质。