Kuzelová K, Mrhalová M, Hrkal Z
Department of Cellular Biochemistry, Institute of Hematology and Blood Transfusion, Prague-2, Czech Republic.
Biochim Biophys Acta. 1997 Oct 20;1336(3):497-501. doi: 10.1016/s0304-4165(97)00062-7.
The kinetics of the interaction of heme with hemopexin and albumin was monitored by measuring the time dependence of changes in the Soret absorption spectra. Since the protein binding sites can only bind heme monomers, the binding kinetics apparently reflected the slow dissociation of heme dimers, resulting from dimer/monomer equilibria in aqueous heme solutions. The dissociation of heme dimers is characterized by the rate constant of (3-4) x 10(-3) s(-1). The measurements further revealed significant differences in the kinetic profiles (slowing down the binding interaction) that were dependent on the storage time of heme solutions at room temperature. These presumably responded to the gradual formation of higher aggregates of heme, which cannot dissociate into dimers/monomers. Alternatively, partial autooxidation of heme molecules could increase the stability of heme dimers and obstruct specific binding of heme to the proteins.
通过测量Soret吸收光谱变化的时间依赖性来监测血红素与血红素结合蛋白和白蛋白相互作用的动力学。由于蛋白质结合位点只能结合血红素单体,结合动力学显然反映了血红素二聚体的缓慢解离,这是由血红素水溶液中的二聚体/单体平衡导致的。血红素二聚体的解离特征在于速率常数为(3 - 4)×10(-3)s(-1)。测量进一步揭示了动力学曲线存在显著差异(结合相互作用减慢),这取决于血红素溶液在室温下的储存时间。这些差异可能是由于血红素逐渐形成更高聚集体,而这些聚集体不能解离成二聚体/单体。另外,血红素分子的部分自动氧化可能会增加血红素二聚体的稳定性,并阻碍血红素与蛋白质的特异性结合。