Huang J, Leone M, Boffi A, Friedman J M, Chiancone E
Department of Physiology and Biophysics, Albert Einstein College of Medicine, Bronx, New York 10461, USA.
Biophys J. 1996 Jun;70(6):2924-9. doi: 10.1016/S0006-3495(96)79862-4.
The near-infrared charge transfer band at 760 nm (band III) has been investigated in deoxy and photodissociated dimeric Scapharca hemoglobin. At 300 K, the 10-ns spectrum of the carbonmonoxy derivative photoproduct is shifted by about 6 nm toward longer wavelengths with respect to the deoxy spectrum, both in buffer and in glycerol/buffer solutions. Moreover, the band III peak occurs at about the same wavelength at 300 K and at 10 K for the 10-ns photodissociated derivative, whereas in the deoxy derivative large changes in peak position and linewidth are observed as a function of temperature. These findings suggest that in dimeric Scapharca hemoglobin the photoproduct has not relaxed after 10 ns. The complete time dependence of the relaxation process has been studied both in buffer and in glycerol/buffer solutions at room temperature. The relaxation from the photoproduct to the deoxy species occurs on a microsecond time scale, in line with recent optical absorption and resonance Raman measurements.
已对脱氧和光解离的双聚紫贻贝血红蛋白中760 nm处的近红外电荷转移带(带III)进行了研究。在300 K时,无论是在缓冲液中还是在甘油/缓冲液中,碳氧血红蛋白衍生物光产物的10 ns光谱相对于脱氧光谱都向更长波长方向移动了约6 nm。此外,对于10 ns光解离衍生物,带III峰在300 K和10 K时出现在大约相同的波长处,而在脱氧衍生物中,观察到峰位置和线宽随温度有很大变化。这些发现表明,在双聚紫贻贝血红蛋白中,光产物在10 ns后并未弛豫。已在室温下的缓冲液和甘油/缓冲液中研究了弛豫过程的完整时间依赖性。从光产物到脱氧物种的弛豫发生在微秒时间尺度上,这与最近的光吸收和共振拉曼测量结果一致。