Sharma V S, Geibel J F, Ranney H M
Proc Natl Acad Sci U S A. 1978 Aug;75(8):3747-50. doi: 10.1073/pnas.75.8.3747.
The kinetic data on model compounds of hemoglobin indicate that in oxyderivatives ligand dissociation rates are sensitive to the "tension" exerted by the proximal base on the metal-to-ligand bond; the corresponding rates for carboxy derivatives are not sensitive to the tension. It is suggested that the metal-to-ligand bond becomes weaker with increased "pull" (or tension) on Fe from the proximal base due to the steric and/or electronic interaction between the ligand, the porphyrin ring, and the proximal base. In model compounds the linear heme Fe-to-CO bound vis-a-vis the bent heme Fe-to-O2 bond probably makes such interactions less significant in carboxy derivatives. It is proposed that the kinetic alpha,beta-chain nonequivalence in Hb4(O2)4 is due to the difference in the tension in the two chains on Fe by the proximal base. The absence of alpha,beta-chain differences large enough to show up in CO dissociation rates from Hb4(CO)4 is explained on the basis of lack of sensitivity of the Fe-CO bound to tension from the proximal base. The implications of the results for the observed cooperative effects in ligand combination (for CO) and dissociation (for O2 and NO) rates of hemoglobin have also been discussed.
血红蛋白模型化合物的动力学数据表明,在氧衍生物中,配体解离速率对近端碱基施加于金属-配体键的“张力”敏感;而羧基衍生物的相应速率对该张力不敏感。有人提出,由于配体、卟啉环和近端碱基之间的空间和/或电子相互作用,随着近端碱基对铁的“拉力”(或张力)增加,金属-配体键会变弱。在模型化合物中,相对于弯曲的血红素铁-氧键,线性的血红素铁-一氧化碳键可能使这种相互作用在羧基衍生物中不太显著。有人提出,Hb4(O2)4中动力学上的α、β链不等效是由于近端碱基对两条链上铁的张力不同所致。基于铁-一氧化碳键对近端碱基张力不敏感,解释了Hb4(CO)4中α、β链差异小到在一氧化碳解离速率中未表现出来的原因。还讨论了这些结果对血红蛋白配体结合(一氧化碳)和解离(氧气和一氧化氮)速率中观察到的协同效应所具有的意义。