Zhang Y, Akilesh S, Wilcox D E
Department of Chemistry, Dartmouth College, Hanover, New Hampshire 03755-3564, USA.
Inorg Chem. 2000 Jul 10;39(14):3057-64. doi: 10.1021/ic000036s.
The binding of Ni(II) and Cu(II) to histidine, to the tripeptides GlyGlyHis and HisGlyHis, and to the protein bovine serum albumin has been studied by isothermal titration calorimetry (ITC) to determine the experimental conditions and data analysis necessary to reproduce literature values for the binding constants and thermodynamic parameters. From analysis of the ITC data, we find that there are two major considerations for the use of this method to accurately quantify metal ion interaction with biological macromolecules. First, to determine true pH-independent binding constants, ITC data must be corrected for metal ion competition with protons by accounting for the experimental pH and pKa values of the metal-binding residues. Second, metal interaction with the buffer (stability and enthalpy of formation of metal-buffer complex(es)) must be included in the analysis of the ITC data to determine the binding constants and the change in enthalpy. While it may be possible to use a buffer that forms only weak, and therefore negligible, complexes with the metal, a buffer that has a strong and well-characterized interaction has the benefit of suppressing metal ion hydrolysis and precipitation, and of allowing the quantification of high-affinity metal-binding sites on biological macromolecules. This study has also quantified the contribution of the N-terminal imidazole of HisGlyHis to the stability of the Cu(II) and Ni(II) complexes of this protein sequence and has provided new insight about Cu(II) binding to albumin.
通过等温滴定量热法(ITC)研究了Ni(II)和Cu(II)与组氨酸、三肽GlyGlyHis和HisGlyHis以及蛋白质牛血清白蛋白的结合,以确定重现结合常数和热力学参数的文献值所需的实验条件和数据分析。通过对ITC数据的分析,我们发现使用该方法准确量化金属离子与生物大分子的相互作用有两个主要考虑因素。首先,为了确定真正与pH无关的结合常数,必须通过考虑金属结合残基的实验pH和pKa值来校正ITC数据中金属离子与质子的竞争。其次,在ITC数据分析中必须包括金属与缓冲液的相互作用(金属-缓冲液络合物的稳定性和形成焓),以确定结合常数和焓变。虽然有可能使用仅与金属形成弱络合物(因此可以忽略不计)的缓冲液,但具有强且特征明确的相互作用的缓冲液有利于抑制金属离子水解和沉淀,并有利于量化生物大分子上的高亲和力金属结合位点。本研究还量化了HisGlyHis的N端咪唑对该蛋白质序列的Cu(II)和Ni(II)络合物稳定性的贡献,并提供了关于Cu(II)与白蛋白结合的新见解。