Lambright D G, Balasubramanian S, Boxer S G
Department of Chemistry, Stanford University, California 94305-5080.
Biochemistry. 1993 Sep 28;32(38):10116-24. doi: 10.1021/bi00089a030.
We have recently reported spectroscopic evidence for structural relaxation of myoglobin (Mb) following photodissociation of MbCO [Lambright, D. G., Balasubramanian, S., & Boxer, S. G. (1991) Chem. Phys. 158, 249-260]. In this paper we report measurements for a series of single amino acid mutants of human myoglobin on the distal side of the heme pocket (positions 45, 64, and 68) in order to examine specific structural determinants involved in this conformational relaxation and to determine the nature of the coupling between relaxation and the functional process of ligand binding. The kinetics of ligand binding and conformational relaxation were monitored by transient absorption spectroscopy in the Soret spectral region, and the results are analyzed using a four-state ligand binding model. Two principal results emerge: (1) amino acid substitutions in the distal heme pocket affect the kinetics of the nonequilibrium conformational relaxation and (2) the rate of ligand escape from the protein matrix is not significantly perturbed by the distal heme pocket mutations.
我们最近报道了肌红蛋白(Mb)与一氧化碳结合物(MbCO)光解离后结构弛豫的光谱学证据[兰布赖特,D.G.,巴拉苏布拉马尼亚姆,S.,& 博克瑟,S.G.(1991年)《化学物理》158卷,249 - 260页]。在本文中,我们报道了对人肌红蛋白血红素口袋远端(第45、64和68位)一系列单氨基酸突变体的测量结果,以便研究参与这种构象弛豫的特定结构决定因素,并确定弛豫与配体结合功能过程之间耦合的性质。通过在索雷特光谱区域的瞬态吸收光谱监测配体结合和构象弛豫的动力学,并使用四态配体结合模型分析结果。得出两个主要结果:(1)血红素口袋远端的氨基酸取代影响非平衡构象弛豫的动力学;(2)配体从蛋白质基质中逸出的速率没有受到血红素口袋远端突变的显著干扰。