Shipulina N, Hunt R C, Shaklai N, Smith A
Division of Molecular Biology and Biochemistry, School of Biological Sciences, University of Missouri-Kansas City, 64110, USA.
J Protein Chem. 1998 Apr;17(3):255-60. doi: 10.1023/a:1022536818947.
Hemopexin, which acts as an antioxidant by binding heme (Kd < 1 pM), is synthesized by hepatic parenchymal cells, by neurons of the central and peripheral nervous systems, and by human retinal ganglia. Two key regulatory molecules, nitric oxide (.NO) and carbon monoxide (CO), both bind to heme proteins and since ferroheme-hemopexin binds CO, the possible role of heme-hemopexin in binding .NO was investigated. .NO binds rapidly to hemopexin-bound ferroheme as shown by characteristic changes in the Soret and visible-region absorbance spectra. Circular dichroism spectra of .NO-ferroheme-hemopexin in the Soret region exhibit an unusual bisignate feature with a zero crossover at the absorbance wavelength maximum, showing that exciton coupling is occurring. Notably, the .NO complex of ferroheme-hemopexin is sufficiently avid and stable to allow hemopexin to bind this molecule in vivo and, thus, hemopexin may protect against NO-mediated toxicity especially in conditions of trauma and hemolysis.
血红素结合蛋白通过结合血红素发挥抗氧化剂的作用(解离常数Kd < 1皮摩尔),由肝实质细胞、中枢和外周神经系统的神经元以及人类视网膜神经节合成。两种关键的调节分子,一氧化氮(·NO)和一氧化碳(CO),都与血红素蛋白结合,并且由于亚铁血红素 - 血红素结合蛋白结合CO,因此研究了血红素 - 血红素结合蛋白在结合·NO方面的可能作用。如Soret和可见区域吸收光谱的特征变化所示,·NO迅速与血红素结合蛋白结合的亚铁血红素结合。在Soret区域,·NO - 亚铁血红素 - 血红素结合蛋白的圆二色光谱呈现出不寻常的双信号特征,在吸收波长最大值处有一个零交叉点,表明激子耦合正在发生。值得注意的是,亚铁血红素 - 血红素结合蛋白的·NO复合物具有足够的亲和力和稳定性,使血红素结合蛋白能够在体内结合该分子,因此,血红素结合蛋白可能尤其在创伤和溶血情况下预防NO介导的毒性。