Gilman J G, Brewer G J
Biochem J. 1978 Mar 1;169(3):625-32. doi: 10.1042/bj1690625.
Zn2+ is known to increase the 02 affinity of human haemoglobin. Previous data suggested that Zn2+ exerts its effect by directly binding to haemoglobin, rather than by competing with or binding to 2,3-bisphosphoglycerate. It was also shown that there are two 02-linked zinc-binding sites in haemoglobin, and that Zn2+ does not significantly alter haemoglobin co-operativity or the alkaline Bohr effect. The effect of Zn2+ on 02 affinity of haemoglobin can also be observed for other haemoglobins as diverse as those of cow and chicken. This paper presents new data on the haemoglobin-zinc interaction for normal haemoglobin, des-His146beta-haemoglobin and N-ethylsuccinimide-haemoglobin of humans. For normal haemoglobin (0.05 mM in tetramers), at 20 degrees C in buffer containing 0.1 M-Cl-, 02-dissociation-curve experiments showed that the addition of 0.4-0.5 mM-ZnS04 did not change the Bohr effect between pH 6.71 and 7.29. Similar experiments, with "zinc-ion buffers", showed that the value of the Hill coefficient, h, decreased only slightly if the concentration of free Zn2+ was held constant. For N-ethylsuccinimide-haemoglobin, Zn2+ caused less increase in O2 affinity than for normal haemoglobin. These studies, together with data on the equilibrium binding of Zn2+ to oxy-, deoxy- and des-His146beta-haemoglobins, suggest that zinc is chelated in oxyhaemoglobin by at least three amino acids, two of which are histidine-146beta and cysteine-93beta.
已知锌离子(Zn2+)可提高人血红蛋白对氧气(O2)的亲和力。先前的数据表明,Zn2+是通过直接与血红蛋白结合来发挥作用的,而不是通过与2,3-二磷酸甘油酸竞争或结合来实现的。研究还表明,血红蛋白中有两个与氧气相关的锌结合位点,并且Zn2+不会显著改变血红蛋白的协同性或碱性波尔效应。对于牛和鸡等不同种类的血红蛋白,也能观察到Zn2+对其O2亲和力的影响。本文给出了关于人正常血红蛋白、去组氨酸146β血红蛋白和N-乙基琥珀酰亚胺血红蛋白与锌相互作用的新数据。对于正常血红蛋白(四聚体浓度为0.05 mM),在20℃、含有0.1 M-Cl-的缓冲液中进行的O2解离曲线实验表明,添加0.4 - 0.5 mM的硫酸锌(ZnSO4)在pH值6.71至7.29之间不会改变波尔效应。使用“锌离子缓冲液”进行的类似实验表明,如果游离Zn2+的浓度保持恒定,希尔系数h的值仅略有下降。对于N-乙基琥珀酰亚胺血红蛋白,Zn2+引起的O2亲和力增加幅度小于正常血红蛋白。这些研究,连同Zn2+与氧合血红蛋白、脱氧血红蛋白和去组氨酸146β血红蛋白平衡结合的数据表明,锌在氧合血红蛋白中至少与三个氨基酸螯合,其中两个是组氨酸-146β和半胱氨酸-93β。