Asakura T, Onishi T, Friedman S, Schwartz E
Proc Natl Acad Sci U S A. 1974 May;71(5):1594-8. doi: 10.1073/pnas.71.5.1594.
The oxy-form of sickle hemoglobin (Hb S) is abnormally unstable and precipitates at a 10-fold faster rate than does oxyhemoglobin A (oxy-Hb A) during mechanical shaking. The apparent rate of precipitation of heterozygous hemolysate (AS) is approximately half that of oxy-Hb S. The deoxy-form of Hb S, on the other hand, is resistant to the mechanical treatment. This stabilization is attributed to the conformational change of hemoglobin rather than the lack of oxygen, because carbonmonoxide hemoglobin S, which is known to have conformational properties similar to those of oxy-Hb, is unstable even under anaerobic conditions. Methemoglobin S is most unstable, although addition of cyanide stabilizes the protein. The precipitation of oxy-Hb S is inhibited by ethanol and other organic solvents. The relationship of the mechanical instability of sickle oxyhemoglobin to intraerythrocytic denaturation and vaso-occlusive phenomena in sickle cell disease to be determined.
镰状血红蛋白(Hb S)的氧合形式异常不稳定,在机械振荡过程中,其沉淀速度比氧合血红蛋白A(氧合-Hb A)快10倍。杂合溶血产物(AS)的表观沉淀速度约为氧合-Hb S的一半。另一方面,Hb S的脱氧形式对机械处理具有抗性。这种稳定性归因于血红蛋白的构象变化而非缺氧,因为已知一氧化碳血红蛋白S具有与氧合-Hb相似的构象特性,即使在厌氧条件下也不稳定。高铁血红蛋白S最不稳定,不过添加氰化物可使该蛋白稳定。乙醇和其他有机溶剂可抑制氧合-Hb S的沉淀。镰状细胞病中镰状氧合血红蛋白的机械不稳定性与红细胞内变性和血管阻塞现象之间的关系有待确定。