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三配位交联血红蛋白的变构动力学与平衡

Allosteric kinetics and equilibria of triligated, cross-linked hemoglobin.

作者信息

Zhao M, Jiang J, Greene M, Andracki M E, Fowler S A, Walder J A, Ferrone F A

机构信息

Department of Physics and Atmospheric Science, Drexel University, Philadelphia, Pennsylvania 19104.

出版信息

Biophys J. 1993 May;64(5):1520-32. doi: 10.1016/S0006-3495(93)81521-2.

Abstract

Using modulated excitation, we have measured the forward and reverse rates of the allosteric transition between relaxed (R) and tense (T) quaternary structures for triply ligated hemoglobin (Hb), cross-linked between the alpha chains at Lys 99. Oxygen, carbon monoxide, and water were used as ligands and were studied in phosphate and low Cl- bis-Tris buffers at neutral pH. Since the cross-link prohibits disproportionation, triply ligated aquomet Hb species with ferrous beta chains were specifically isolated by isoelectric focusing. Modulated excitation provides rate pairs and therefore gives equilibrium constants between quaternary structures. To coordinate with that information, oxygen binding curves of fully ferrous and tri-aquomet Hb were also measured. L3, the equilibrium constant between three liganded R and T structures, is determined by modulated excitation to be of order unity for O2 or CO (1.1 to 1.5 for 3O2 and 0.7 for 3CO bound), while with three aquomet subunits it is much greater (> or = 23). R-->T conversion rates are similar to those found for HbA, with weak sensitivity to changes in L3. The L3 values from HbXL O2 were used to obtain a unique allosteric decomposition of the ferrous O2 binding curve in terms of KT, KR, and L3. From these values and the O2 binding curve of tri-aquomet HbXL, L3 was calculated to be 2.7 for the tri-aquomet derivative. Consistency in L3 values between equilibrium and modulated excitation data for tri-aquomet-HbXL can be achieved if the equilibrium constant for O2 binding to the alpha chains is six times lower than that for binding to the beta chains in the R state, while the cooperative properties remain homogeneous. The results are in quantitative agreement with other studies, and suggest that the principal effect of the cross-link is to decrease the R state and T state affinity of the alpha subunits with almost no change in the affinity of the beta subunits, leaving the allosteric parameters L and c unchanged.

摘要

我们使用调制激发法,测量了在赖氨酸99处α链之间交联的三重连接血红蛋白(Hb)在松弛(R)和紧张(T)四级结构之间变构转变的正向和反向速率。氧气、一氧化碳和水用作配体,并在中性pH值的磷酸盐和低Cl-双(三羟甲基氨基甲烷)缓冲液中进行研究。由于交联阻止了歧化反应,通过等电聚焦特异性分离出具有亚铁β链的三重连接水合高铁血红蛋白物种。调制激发提供速率对,从而给出四级结构之间的平衡常数。为了与该信息相协调,还测量了全亚铁和三水合高铁血红蛋白的氧结合曲线。L3是三个配体结合的R和T结构之间的平衡常数,通过调制激发法确定,对于O2或CO,其值约为1(对于结合3个O2为1.1至1.5,对于结合3个CO为0.7),而对于三个水合高铁亚基,其值要大得多(≥23)。R→T转化率与HbA的相似,对L3变化的敏感性较弱。来自HbXL O2的L3值用于根据KT、KR和L3获得亚铁氧结合曲线的独特变构分解。根据这些值和三水合高铁HbXL的氧结合曲线,计算出三水合高铁衍生物的L3为2.7。如果O2与α链结合的平衡常数比其在R状态下与β链结合的平衡常数低六倍,而协同性质保持均匀,则三水合高铁-HbXL的平衡和调制激发数据之间的L3值可以实现一致性。结果与其他研究在定量上一致,表明交联的主要作用是降低α亚基的R状态和T状态亲和力,而β亚基的亲和力几乎没有变化,变构参数L和c保持不变。

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