Coletta M, Brittain T, Brunori M
Biochem J. 1986 Sep 1;238(2):353-7. doi: 10.1042/bj2380353.
Thermodynamic and kinetic properties of O2 and CO binding to haemoglobin (Hb) Kempsey [Asp-G1(99) beta----Asn] were investigated and the activation parameters for the two ligands were determined. At every temperature the O2-binding isotherms display a weak co-operativity, n ranging between 1.1 and 1.2, and dissociation kinetics show a single-exponential behaviour. O2-binding kinetics were studied at 25 degrees C by temperature jump and are characterized at each saturation (from Y = 0.31 to Y = 1.0) by two processes, a fast bimolecular one and a slow monomolecular one (tau -1 = 20 s-1), which contributes to approx. 30% of the whole relaxation amplitude at every Y. CO-binding kinetics to Hb Kempsey were followed at several temperatures by flash photolysis and stopped flow. The process is biphasic, as reported elsewhere [Bunn, Wohl, Bradley, Cooley & Gibson (1974) J. Biol. Chem. 249, 7402-7409], and the relative contributions of the two bimolecular rates to the whole process are only slightly affected by temperature. On taking account for the fraction of dimers at every protein concentration, the slow phase corresponds to approx. 50% of the ligand binding to tetramers. Correlation of these results with previous spectroscopic data leads to the hypothesis that the biphasic time course of CO binding may be attributed to alpha/beta heterogeneity of the R-state of tetrameric Hb Kempsey.
研究了氧气(O₂)和一氧化碳(CO)与肯普西血红蛋白(Hb Kempsey)[天冬氨酸-G1(99)β→天冬酰胺]结合的热力学和动力学性质,并确定了两种配体的活化参数。在每个温度下,O₂结合等温线显示出较弱的协同性,n值在1.1至1.2之间,解离动力学表现为单指数行为。通过温度跳跃法在25℃下研究了O₂结合动力学,在每个饱和度(从Y = 0.31至Y = 1.0)下,其特征为两个过程,一个快速双分子过程和一个缓慢单分子过程(τ⁻¹ = 20 s⁻¹),在每个Y值下,该缓慢单分子过程约占整个弛豫幅度的30%。通过闪光光解和停流法在几个温度下跟踪了CO与Hb Kempsey的结合动力学。正如其他地方所报道的[邦恩、沃尔、布拉德利、库利和吉布森(1974年)《生物化学杂志》249卷,7402 - 7409页],该过程是双相的,并且两个双分子速率对整个过程的相对贡献仅受温度的轻微影响。考虑到每个蛋白质浓度下二聚体的比例,慢相大约对应于配体与四聚体结合的50%。这些结果与先前的光谱数据的相关性导致这样一种假设,即CO结合的双相时间进程可能归因于四聚体Hb Kempsey的R态的α/β异质性。