Iben I E, Cowen B R, Sanches R, Friedman J M
AT&T Bell Laboratories, Murray Hill, New Jersey 07974.
Biophys J. 1991 Apr;59(4):908-19. doi: 10.1016/S0006-3495(91)82304-9.
Cryogenic samples of MbCO at pH3 are studied using nanosecond and picosecond time-resolved resonance Raman spectroscopy. It is observed that under excitation conditions sufficient to completely photodissociate MbCO at pH7, the pH3 sample at 10 ns remains substantially unphotolyzed even at 15 K. The similarity in the optical and resonance Raman spectra of MbCO at pH3 with that of pH7 indicates that at pH3 the iron remains six-coordinate and low-spin. The Fe-CO stretch frequency is consistent with a more upright CO orientation. The absence of the v(Fe-His) band in the 30 ps photoproduct Raman spectrum suggests that the Fe-His(F8) bond is broken within 30 ps of photodissociation. Other Raman bands, though, are not consistent with a normal four-coordinate heme for the photoproduct, Mb*. Suggested possible interpretations include a four-coordinate heme highly perturbed by the close lying protonated proximal histidine or a five-coordinate heme with the Fe-His bond significantly weakened. The partial photolysis monitored at 30 ps and 100 K indicates either a significant amount of geminate recombination within 30 ps or low quantum yield or photolysis. The time course for CO recombination is monitored via the Raman spectra from 30 ps to 3 ns at 100 K and 160 K. Of the fraction of protein-ligand pairs that remain photodissociated at 30 ps, 50% recombine by approximately 250 ps at 100 K and 160 K, supporting the flash photolysis rebinding data of Cowen et al. (Cowen, B. R. 1990. Ph. D. thesis. University of Illinois at Urbana-Champaign; Cowen, B. R., D. Braunstein, H. Frauenfelder, P. J. Steinbach, and R. D. Young. 1989. Biophys. J. 55:55a. [Abstr.].) The conclusions from these resonance Raman studies are extended to solution phase studies at ambient temperatures.
使用纳秒和皮秒时间分辨共振拉曼光谱对pH3条件下的肌红蛋白一氧化碳(MbCO)低温样品进行了研究。据观察,在足以使pH7条件下的MbCO完全光解离的激发条件下,即使在15K时,pH3样品在10纳秒时仍基本未发生光解。pH3条件下MbCO的光学光谱和共振拉曼光谱与pH7条件下的相似,这表明在pH3时铁仍为六配位且处于低自旋状态。Fe-CO伸缩频率与更垂直的CO取向一致。在30皮秒光产物拉曼光谱中没有v(Fe-His)带,这表明Fe-His(F8)键在光解离的30皮秒内被破坏。然而,其他拉曼带与光产物Mb*的正常四配位血红素不一致。提出的可能解释包括被紧邻的质子化近端组氨酸高度扰动的四配位血红素或Fe-His键显著减弱的五配位血红素。在30皮秒和100K下监测到的部分光解表明,在30皮秒内有大量的双分子复合,或者光解的量子产率较低。通过在100K和160K下从30皮秒到3纳秒的拉曼光谱监测CO复合的时间进程。在30皮秒时仍处于光解离状态的蛋白质-配体对中,有50%在100K和160K下约250皮秒时复合,这支持了Cowen等人的闪光光解再结合数据(Cowen, B. R. 1990. 博士论文。伊利诺伊大学厄巴纳-香槟分校;Cowen, B. R., D. Braunstein, H. Frauenfelder, P. J. Steinbach, and R. D. Young. 1989. Biophys. J. 55:55a. [摘要])。这些共振拉曼研究的结论扩展到了常温下的溶液相研究。