Kofod P, Bauer R, Danielsen E, Larsen E, Bjerrum M J
Department of Chemistry, Royal Veterinary and Agricultural University, Frederiksberg, Denmark.
Eur J Biochem. 1991 Jun 15;198(3):607-11. doi: 10.1111/j.1432-1033.1991.tb16057.x.
113Cd nuclear magnetic resonance spectroscopy has been used to investigate the metal binding sites of cadmium-substituted copper, zinc-containing superoxide dismutase from baker's yeast. NMR signals were obtained for 113Cd(II) at the Cu site as well as for 113Cd(II) at the Zn site. The two subunits in the dimeric enzyme were found to have identical coordination properties towards 113Cd(II) at the Zn site when no copper is coordinated at the Cu site, and when Cu(I) or Cd(II) is coordinated, were found to be very small indicating that 113Cd(II) must be bound to the same number and type of ligands in both cases. Furthermore, the spectra show that the rate of exchange of protein-bound 113Cd(II) and free 113Cd2+ is slow on the NMR time scale also at the Cu site. The present study suggests an explanation for the discrepancy in the literature regarding 113Cd-NMR investigations of bovine superoxide dismutase.
113Cd核磁共振光谱已被用于研究来自面包酵母的镉取代的含铜、锌超氧化物歧化酶的金属结合位点。在铜位点获得了113Cd(II)的核磁共振信号,在锌位点也获得了113Cd(II)的核磁共振信号。当铜位点没有铜配位时,发现二聚体酶中的两个亚基对锌位点的113Cd(II)具有相同的配位性质,并且当Cu(I)或Cd(II)配位时,发现差异非常小,这表明在两种情况下113Cd(II)一定与相同数量和类型的配体结合。此外,光谱表明,在核磁共振时间尺度上,蛋白质结合的113Cd(II)和游离的113Cd2+在铜位点的交换速率也很慢。本研究为文献中关于牛超氧化物歧化酶的113Cd-NMR研究的差异提供了解释。