Shelnutt J A, Rousseau D L, Friedman J M, Simon S R
Proc Natl Acad Sci U S A. 1979 Sep;76(9):4409-13. doi: 10.1073/pnas.76.9.4409.
Raman difference spectroscopy measurements on native and chemically modified human deoxyhemoglobins stabilized in either the R or the T quaternary structure revealed frequency differences in the oxidation state marker lines. The differences indicate that the R structure has an effective increase in the electron density of the antibonding pi* orbitals of the porphyrin rings. This increase is explained by a charge transfer interaction between donor orbitals and the pi* orbitals of the porphyrins. The relative amount of charge transferred, which is inferred from the Raman difference measurements, correlates with some but not all factors that influence the energetics of the quaternary structure equilibrium. In addition, the free energy of cooperativity for a variety of ligated proteins follows the same order as that of the degree of charge depletion of the pi* orbitals upon ligation as determined from the frequency of a Raman mode. The proposed electronic interaction between the protein and heme could result in energies large enough to provide a significant contribution to the energetics of hemoglobin cooperativity.
对稳定在R或T四级结构的天然和化学修饰的人脱氧血红蛋白进行拉曼差光谱测量,结果显示氧化态标记线存在频率差异。这些差异表明,R结构中卟啉环反键π轨道的电子密度有效增加。这种增加是由供体轨道与卟啉的π轨道之间的电荷转移相互作用所解释的。从拉曼差测量中推断出的电荷转移相对量,与影响四级结构平衡能量学的一些但并非所有因素相关。此外,各种结合蛋白的协同自由能遵循的顺序,与根据拉曼模式频率确定的结合时π*轨道电荷耗尽程度的顺序相同。蛋白质与血红素之间提议的电子相互作用可能产生足够大的能量,对血红蛋白协同作用的能量学做出重大贡献。