Adachi K, Vonk H, Reilly M P, Adachi H, Schroeder W A, Schwartz E, Asakura T
Biochim Biophys Acta. 1984 Oct 23;790(2):132-40. doi: 10.1016/0167-4838(84)90216-4.
The effects of the mutation of the alpha 1 beta 2 contact in Hb Malmö (alpha 2 beta 2 97(FG4)His----Gln) on oxygen-binding properties, ease of dissociation into dimeric hemoglobin and stability were studied. The P50 value of Hb Malmö in the absence of organic phosphates was 1.9 mmHg, in contrast to 8.8 mmHg of Hb A. The n-value of Hb Malmö was 1.6. The overall free energy of interaction of oxygen with Hb Malmö was about 25% that of Hb A. The Adair constant, K1, of Hb Malmö was about 10-times larger than that of Hb A, but the K4 of Hb Malmö was similar to that of Hb A. The liganded form of Hb Malmö was found to dissociate into dimers more readily than Hb A by gel filtration on Sephadex G-100. Dissociation into dimeric hemoglobin was enhanced in dilute solutions. Increased instability during mechanical agitation of diluted samples was greater for Hb Malmö than for Hb A. The denaturation rate constants of tetramers of the oxyform of Hb A and Hb Malmö were about 20-times greater than those of dimers of these hemoglobins. The instability of Hb Malmö depends on a greater alpha 1 beta 2 dissociation constant compared with that of Hb A. These findings allow an examination of the role of the intersubunit contact in determining the functional properties and the stability of the hemoglobin molecule.
研究了血红蛋白马尔默(α2β2 97(FG4)组氨酸→谷氨酰胺)中α1β2接触位点突变对氧结合特性、解离成二聚体血红蛋白的难易程度以及稳定性的影响。在没有有机磷酸盐的情况下,血红蛋白马尔默的P50值为1.9 mmHg,而血红蛋白A的P50值为8.8 mmHg。血红蛋白马尔默的n值为1.6。氧与血红蛋白马尔默相互作用的总自由能约为血红蛋白A的25%。血红蛋白马尔默的阿代尔常数K1约为血红蛋白A的10倍,但血红蛋白马尔默的K4与血红蛋白A相似。通过在葡聚糖凝胶G-100上进行凝胶过滤发现,与血红蛋白A相比,血红蛋白马尔默的配体形式更容易解离成二聚体。在稀溶液中,解离成二聚体血红蛋白的情况增强。在对稀释样品进行机械搅拌时,血红蛋白马尔默的不稳定性增加程度比血红蛋白A更大。血红蛋白A和血红蛋白马尔默的氧合形式四聚体的变性速率常数约为这些血红蛋白二聚体的20倍。与血红蛋白A相比,血红蛋白马尔默的不稳定性取决于更大的α1β2解离常数。这些发现有助于研究亚基间接触在决定血红蛋白分子功能特性和稳定性方面的作用。