Sharma V S, John M E, Waterman M R
J Biol Chem. 1982 Oct 25;257(20):11887-92.
In the hemoglobin of the opossum, the alpha chains have different residues at positions E7 and E11 than do most other mammalian hemoglobins. In the opossum, the usual histidine at alpha E7 is replaced by glutamine, the valine at alpha E11 by isoleucine, and the hemoglobin is known to have a low oxygen affinity and a low Hill coefficient. Comparison of kinetic studies of opossum hemoglobin with normal human hemoglobin shows that alpha chains in Hb opossum, despite the lack of distal histidine, do not differ significantly in CO-combination rates in either the T or R states. These rates are much slower than the rates reported for Hb Zurich, the hemoglobin from Chironomus thumi thumi, or the monomeric components of glycera hemoglobin, all of which also have a different residue at E7. As compared with Hb A, the changes in ligand affinities in the T and R states are small and cannot account for the unusually high values of p50 for Hb opossum. The equilibrium and kinetic data indicate that the L = (T)/(R) is about 100 times higher for Hb opossum than for Hb A; CCO = KR/KT approximately equal to 0.014. The kinetic data on l'4 and l also indicate that the R leads to T equilibrium for Hb4(CO)4 and Hb4(CO)2 can be shifted in either direction by adding inositol hexaphosphate or by changing the pH.
在负鼠的血红蛋白中,α链在E7和E11位置的残基与大多数其他哺乳动物的血红蛋白不同。在负鼠中,αE7位置通常的组氨酸被谷氨酰胺取代,αE11位置的缬氨酸被异亮氨酸取代,并且已知这种血红蛋白具有低氧亲和力和低希尔系数。将负鼠血红蛋白与正常人血红蛋白的动力学研究进行比较表明,尽管负鼠血红蛋白缺乏远端组氨酸,但其α链在T态或R态下与一氧化碳结合的速率与正常人血红蛋白并无显著差异。这些速率比苏黎世血红蛋白、嗜菌摇蚊血红蛋白或甘油血红蛋白的单体成分的速率要慢得多,后三者在E7位置也都有不同的残基。与血红蛋白A相比,负鼠血红蛋白在T态和R态下配体亲和力的变化很小,无法解释其异常高的p50值。平衡和动力学数据表明,负鼠血红蛋白的L = (T)/(R)约为血红蛋白A的100倍;CCO = KR/KT约等于0.014。关于l'4和l的动力学数据还表明,通过添加肌醇六磷酸或改变pH值,Hb4(CO)4和Hb4(CO)2从R态到T态的平衡可以向任何一个方向移动。