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配体与血红蛋白结合过程中亚硝酰血红素的光谱跃迁。

Spectral transitions of nitrosyl hemes during ligand binding to hemoglobin.

作者信息

Hille R, Olson J S, Palmer G

出版信息

J Biol Chem. 1979 Dec 10;254(23):12110-20.

PMID:40990
Abstract

Human deoxyhemoglobin has been titrated with nitric oxide at several pH values ranging from 6.0 to 9.0, in the presence and absence of the allosteric effector inositol hexaphosphate at 25 degrees C. Samples were frozen for EPR measurements or analyzed optically within 30 s after mixing to ensure a kinetic population of intermediates. Fractions of pentacoordinate alpha-NO heme groups were determined by fitting EPR and absorbance difference spectra in terms of linear combinations of standard signals. Equivalent results were obtained by these techniques. The fraction of alpha-NO heme exhibiting pentacoordinate character in Hb4NO increases from 0.07 to 0.73 in going from pH 9 to 6. The fraction of alpha hemes which are pentacoordinate in fully saturated nitrosyl hemoglobin, Hb4(NO), increases from 0.0 to 0.41 over the same pH range. Only in the presence of bound inositol-P6 are all 4 the alpha-NO hemes pentacoordinate. Thus, the expression of modified NO heme character is not simply a reflection of the formation of low affinity quaternary conformations. Rather, within this conformation the alpha chain iron atoms exhibit an equilibrium between hexa- and pentacoordinate structures which is perturbed markedly by both proton and phosphate binding. No intermediate coordination structure of the type suggested by Chevion et al. (Chevion, M., Stern, A., Peisach, J., Blumberg, W.E., and Simon, S. (1978) Biochemistry 17, 1745-1750) appears to occur since the observed alpha-NO heme spectra can always by represented quantitatively as a linear combination of the normal hexacoordinate and pentacoordinate signals. The formation of pentacoordinate alpha-NO causes this subunit to exhibit a higher affinity for nitric oxide. Thus on standing at low levels of saturation, there is a slow (t1/2 approximately equal to 8 min at pH 7, 25 degrees C) re-equilibration of ligand from beta to alpha subunits. The final ratio of alpha-NO to beta-NO is 2 to 1 in the absence of phosphates and greater than 10 to 1 in the presence of inositol hexaphosphate.

摘要

在25℃下,于pH值从6.0至9.0的几个范围内,在存在和不存在变构效应剂肌醇六磷酸的情况下,用一氧化氮对人脱氧血红蛋白进行了滴定。将样品冷冻用于电子顺磁共振(EPR)测量,或在混合后30秒内进行光学分析,以确保中间体的动力学群体。通过根据标准信号的线性组合拟合EPR和吸光度差光谱来确定五配位α-NO血红素基团的比例。通过这些技术获得了等效结果。在从pH 9降至6的过程中,Hb4NO中表现出五配位特征的α-NO血红素的比例从0.07增加到0.73。在相同的pH范围内,完全饱和的亚硝酰血红蛋白Hb4(NO)中五配位的α-血红素的比例从0.0增加到0.41。仅在存在结合的肌醇-P6时,所有4个α-NO血红素才是五配位的。因此,修饰的NO血红素特征的表达不仅仅是低亲和力四级构象形成的反映。相反,在这种构象中,α链铁原子在六配位和五配位结构之间表现出平衡,质子和磷酸盐结合会显著扰乱这种平衡。未出现Chevion等人(Chevion, M., Stern, A., Peisach, J., Blumberg, W.E., and Simon, S. (1978) Biochemistry 17, 1745 - 1750)所提出的那种中间配位结构,因为观察到的α-NO血红素光谱总能定量地表示为正常六配位和五配位信号的线性组合。五配位α-NO的形成导致该亚基对一氧化氮表现出更高的亲和力。因此,在低饱和度水平下静置时,配体从β亚基到α亚基存在缓慢的(在pH 7、25℃下t1/2约等于8分钟)重新平衡。在不存在磷酸盐的情况下,α-NO与β-NO的最终比例为2比1,在存在肌醇六磷酸的情况下大于10比1。

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