Li R, Nagai Y, Nagai M
School of Health Sciences, Kanazawa University Faculty of Medicine, Japan.
J Inorg Biochem. 2000 Nov;82(1-4):93-101. doi: 10.1016/s0162-0134(00)00151-3.
In order to assign the circular dichroism (CD) spectral change in the region between 280 and 300 nm of human adult hemoglobin (Hb A) upon the quaternary structure transition induced by oxygen binding, the near- and far-UV CD spectra of the isolated chains and the recombined hemoglobin were examined. Deoxygenation made the negative CD band at 290 nm of oxy-alpha chain deeper. On the other hand, positive CD bands of oxy-beta chain at the 280 to approximately 300 nm became negative upon deoxygenation. These changes were interpreted as being due to environmental alterations of tyrosine (Tyr) and/or tryptophan (Trp) perturbed by tertiary structural changes from the oxy to deoxy form in isolated chains, referring to the CD spectra of model compounds. From the difference between CD bands of the arithmetic mean of deoxy isolated chains and the CD band of deoxyHb tetramer, the contribution of tertiary structural change to the negative CD band of deoxyHb A at 287 nm was estimated to be 50%. This finding has revealed that the net contribution of quaternary structure transition to the negative band is 50%. In far-UV CD spectra, the environmental changes of aromatic residues upon the quaternary structure transition were also detected as a negative band at 225 nm.
为了确定氧结合诱导人成人血红蛋白(Hb A)四级结构转变时280至300 nm区域的圆二色性(CD)光谱变化,研究了分离链和重组血红蛋白的近紫外和远紫外CD光谱。脱氧使氧合α链在290 nm处的负CD带加深。另一方面,氧合β链在280至约300 nm处的正CD带在脱氧时变为负带。参考模型化合物的CD光谱,这些变化被解释为是由于分离链中从氧合形式到脱氧形式的三级结构变化干扰了酪氨酸(Tyr)和/或色氨酸(Trp)的环境。根据脱氧分离链算术平均值的CD带与脱氧血红蛋白四聚体的CD带之间的差异,估计三级结构变化对脱氧Hb A在287 nm处负CD带的贡献为50%。这一发现表明四级结构转变对负带的净贡献为50%。在远紫外CD光谱中,四级结构转变时芳香族残基的环境变化也在225 nm处被检测为一个负带。