Laboratory of Chemical Physics, National Institute of Diabetes and Digestive and Kidney Diseases , National Institutes of Health , Bethesda , Maryland 220892-0520 , United States.
Argonne National Laboratory , 9700 S. Cass Ave. , Argonne , Illinois 60439 , United States.
J Phys Chem B. 2018 Dec 13;122(49):11488-11496. doi: 10.1021/acs.jpcb.8b07414. Epub 2018 Oct 16.
It is well-known that tetrameric hemoglobin binds ligands cooperatively by undergoing a ligand-induced T → R quaternary structure transition, a structure-function relationship that has long served as a model system for understanding allostery in proteins. However, kinetic studies of the reverse, R → T quaternary structure transition following photolysis of carbonmonoxyhemoglobin (HbCO) reveal complex behavior that may be better explained by the presence of two different R quaternary structures coexisting in thermal equilibrium. Indeed, we report here time-resolved small- and wide-angle X-ray scattering (SAXS/WAXS) patterns of HbCO following a temperature jump that not only provide unambiguous evidence for more than one R state, but also unveil the time scale for interconversion between them. Since the time scale for the photolysis-induced R → T transition is likely different for different R-states, this structural heterogeneity must be accounted for to properly explain the kinetic heterogeneity observed in time-resolved spectroscopic studies following photolysis of HbCO.
众所周知,四聚血红蛋白通过经历配体诱导的 T→R 四级结构转变来与配体协同结合,这种结构-功能关系长期以来一直是理解蛋白质变构的模型系统。然而,对碳氧合血红蛋白(HbCO)光解后反向的 R→T 四级结构转变的动力学研究揭示了复杂的行为,这可能更好地解释为两种不同的 R 四级结构在热平衡中共存。事实上,我们在这里报告了 HbCO 经历温度跃变后的时间分辨小角和广角 X 射线散射(SAXS/WAXS)图谱,不仅提供了存在不止一种 R 状态的明确证据,还揭示了它们之间相互转换的时间尺度。由于不同 R 态的光解诱导的 R→T 转变的时间尺度可能不同,因此必须考虑这种结构异质性,以正确解释 HbCO 光解后时间分辨光谱研究中观察到的动力学异质性。