Louderback J G, Ballas S K, Kim-Shapiro D B
Department of Physics, Wake Forest University, Winston-Salem, North Carolina 27109-7507, USA.
Biophys J. 1999 Apr;76(4):2216-22. doi: 10.1016/S0006-3495(99)77377-7.
Sickle cell hemoglobin (HbS) prepared in argon-saturated 1.8 M phosphate buffer was rapidly mixed with carbon monoxide (CO)-saturated buffer. The binding of CO to the sickle hemoglobin and the simultaneous melting of the hemoglobin polymers were monitored by transmission spectroscopy (optical absorption and turbidity). Changes in the absorption profile were interpreted as resulting from CO binding to deoxy-HbS while reduced scattering (turbidity) was attributed to melting (depolymerization) of the HbS polymer phase. Analysis of the data provides insight into the mechanism and kinetics of sickle hemoglobin polymer melting. Conversion of normal deoxygenated, adult hemoglobin (HbA) in high concentration phosphate buffer to the HbA-CO adduct was characterized by an average rate of 83 s-1. Under the same conditions, conversion of deoxy-HbS in the polymer phase to the HbS-CO adduct in the solution phase is characterized by an average rate of 5.8 s-1 via an intermediate species that grows in with a 36 s-1 rate. Spectral analysis of the intermediate species suggests that a significant amount of CO may bind to the polymer phase before the polymer melts.
在氩气饱和的1.8M磷酸盐缓冲液中制备的镰状细胞血红蛋白(HbS)与一氧化碳(CO)饱和缓冲液快速混合。通过透射光谱法(光吸收和浊度)监测CO与镰状血红蛋白的结合以及血红蛋白聚合物的同时解聚。吸收谱的变化被解释为是由于CO与脱氧HbS结合所致,而散射减少(浊度)则归因于HbS聚合物相的解聚。对数据的分析有助于深入了解镰状血红蛋白聚合物解聚的机制和动力学。在高浓度磷酸盐缓冲液中,正常脱氧成人血红蛋白(HbA)转化为HbA-CO加合物的平均速率为83 s-1。在相同条件下,聚合物相中的脱氧HbS转化为溶液相中的HbS-CO加合物的平均速率为5.8 s-1,通过一种以36 s-1速率生长的中间物种进行。对中间物种的光谱分析表明,在聚合物解聚之前,大量的CO可能与聚合物相结合。