Galdes A, Hill H A, Baldwin G S, Waley S G, Abraham E P
Biochem J. 1980 Jun 1;187(3):789-95. doi: 10.1042/bj1870789.
The 1H n.m.r. spectra of beta-lactamase II in the presence of Co(II) were studied. Analysis of the spectra suggests that Co(II) binds at the same two metal-binding sites as does Zn(II). The binding of Co(II) at the first site is much weaker than the binding of Zn(II) at this site, whereas the binding of Co(II) at the second site is tighter than the binding of Zn(II). The binding of Co(II) to the mono-zinc(II)-enzyme caused only one marked change in the spectrum, namely a decrease in the intensity of the resonances assigned to the C-2 and C-4 protons of one histidine residue (residue E). However, when the spectra of the apoenzyme and the Co(II)-enzyme were compared, there were many differences. A significant fraction of the protons in the whole molecule are affected by the binding of Co(II) at the first metal-ion-binding site (where the ligands are the enzyme's sole thiol group and three histidine residues). This may be because the first site is internal, or because of a difference in conformation between the apoenzyme and the mono-Co(II)-enzyme. The second site may be located on the surface of the molecule.
研究了在存在Co(II)的情况下β-内酰胺酶II的1H核磁共振谱。光谱分析表明,Co(II)与Zn(II)结合在相同的两个金属结合位点上。Co(II)在第一个位点的结合比Zn(II)在该位点的结合弱得多,而Co(II)在第二个位点的结合比Zn(II)的结合更紧密。Co(II)与单锌(II)酶的结合仅使光谱发生了一个显著变化,即归属于一个组氨酸残基(残基E)的C-2和C-4质子的共振强度降低。然而,当比较脱辅酶和Co(II)酶的光谱时,存在许多差异。整个分子中相当一部分质子受到Co(II)在第一个金属离子结合位点(其配体是酶唯一的巯基和三个组氨酸残基)结合的影响。这可能是因为第一个位点在内部,或者是由于脱辅酶和单Co(II)酶之间构象的差异。第二个位点可能位于分子表面。