Dumoulin A, Kiger L, Griffon N, Vasseur C, Kister I, Génin P, Marden M C, Pagnier J, Poyart C
INSERM U 299, Hôpital de Bicêtre, France.
Protein Sci. 1996 Jan;5(1):114-20. doi: 10.1002/pro.5560050114.
Based on the properties of two low oxygen affinity mutated hemoglobins (Hb), we have engineered a double mutant Hb (rHb beta YD) in which the beta F41Y substitution is associated with K82D. Functional studies have shown that the Hb alpha 2 beta 2(C7)F41Y exhibits a decreased oxygen affinity relative to Hb A, without a significantly increased autooxidation rate. The oxygen affinity of the natural mutant beta K82D (Hb Providence-Asp) is decreased due to the replacement of two positive charges by two negative ones at the main DPG-binding site. The functional properties of both single mutants are interesting in the view of obtaining an Hb-based blood substitute, which requires: (1) cooperative oxygen binding with an overall affinity near 30 mm Hg at half saturation, at 37 degrees C, and in the absence of 2,3 diphosphoglycerate (DPG), and (2) a slow rate of autooxidation in order to limit metHb formation. It was expected that the two mutations were at a sufficient distance (20 A) that their respective effects could combine to form low oxygen affinity tetramers. The double mutant does display additive effects resulting in a fourfold decrease in oxygen affinity; it can insure, in the absence of DPG, an oxygen delivery to the tissues similar to that of a red cell suspension in vivo at 37 degrees C. Nevertheless, the rate of autooxidation, 3.5-fold larger than that of Hb A, remains a problem.
基于两种低氧亲和力突变血红蛋白(Hb)的特性,我们构建了一种双突变血红蛋白(rHb beta YD),其中β链F41Y取代与K82D相关联。功能研究表明,相对于Hb A,Hb alpha 2 beta 2(C7)F41Y的氧亲和力降低,而自氧化速率没有显著增加。天然突变体βK82D(Hb Providence-Asp)的氧亲和力降低,这是由于在主要的二磷酸甘油酸(DPG)结合位点上两个正电荷被两个负电荷取代。从获得基于血红蛋白的血液替代品的角度来看,这两种单突变体的功能特性都很有趣,这需要:(1)在37℃且不存在2,3-二磷酸甘油酸(DPG)的情况下,具有协同氧结合能力,半饱和时总体亲和力接近30 mmHg,以及(2)自氧化速率缓慢,以限制高铁血红蛋白(metHb)的形成。预计这两个突变相距足够远(20 Å),它们各自的效应可以结合形成低氧亲和力的四聚体。双突变体确实显示出加性效应,导致氧亲和力降低四倍;在不存在DPG的情况下,它能够确保在37℃时向组织输送的氧气与体内红细胞悬液相似。然而,自氧化速率比Hb A大3.5倍,这仍然是一个问题。