Laberge M, Köhler M, Vanderkooi J M, Friedrich J
Institute of Biophysics, Semmelweis University of Medicine, H-1088 Budapest, Hungary.
Biophys J. 1999 Dec;77(6):3293-304. doi: 10.1016/S0006-3495(99)77160-2.
We report on a comparative investigation of the heme pocket fields of two Zn-substituted c-type cytochromes-namely yeast and horse heart cytochromes c-using a combination of hole burning Stark spectroscopy and electrostatic calculations. The spectral hole burning experiments are consistent with different pocket fields experienced at the hemes of the respective cytochromes. In the case of horse heart Zn-cytochrome c, two distinguishable electronic origins with different electrostatic properties are observed. The yeast species, on the other hand, displays a single electronic origin. Electrostatic calculations and graphics modeling using the linearized finite-difference Poisson-Boltzmann equation performed at selected time intervals on nanosecond-molecular dynamics trajectories show that the hemes of the respective cytochromes sample different potentials as they explore conformational space. The electrostatic potentials generated by the protein matrix at the heme show different patterns in both cytochromes, and we suggest that the cytochromes differ by the number of "electrostatic substates" that they can sample, thus accounting for the different spectral populations observed in the two cytochromes.
我们报告了一项关于两种锌取代的c型细胞色素(即酵母细胞色素c和马心细胞色素c)血红素口袋场的比较研究,该研究结合了烧孔斯塔克光谱法和静电计算。光谱烧孔实验与相应细胞色素血红素所经历的不同口袋场一致。在马心锌细胞色素c的情况下,观察到两个具有不同静电性质的可区分电子起源。另一方面,酵母细胞色素显示出单一的电子起源。在纳秒分子动力学轨迹上选定的时间间隔使用线性化有限差分泊松 - 玻尔兹曼方程进行的静电计算和图形建模表明,相应细胞色素的血红素在探索构象空间时采样不同的电位。蛋白质基质在血红素处产生的静电势在两种细胞色素中显示出不同的模式,并且我们认为这两种细胞色素的差异在于它们可以采样的“静电亚态”数量,从而解释了在两种细胞色素中观察到的不同光谱群体。