Onufriev A, Case D A, Ullmann G M
Department of Molecular Biology, The Scripps Research Institute, 10550 North Torrey Pines Road, TPC-15, La Jolla, California 92037, USA.
Biochemistry. 2001 Mar 27;40(12):3413-9. doi: 10.1021/bi002740q.
When individual titratable sites in a molecule interact with each other, their pH titration can be considerably more complex than that of an independent site described by the classical Henderson-Hasselbalch equation. We propose a novel framework that decomposes any complex titration behavior into simple standard components. The approach maps the set of N interacting sites in the molecule onto a set of N independent, noninteracting quasi-sites, each characterized by a pK'(a) value. The titration curve of an individual site in the molecule is a weighted sum of Henderson-Hasselbalch curves corresponding to the quasi-sites. The total protonation curve is the unweighted sum of these Henderson-Hasselbalch curves. We show that pK'(a) values correspond to deprotonation constants available from methods that can be used to assess total proton uptake or release, and establish their connection to protonation curves of individual residues obtained by NMR or infrared spectroscopy. The new framework is tested on a small molecule diethylenetriaminepentaacetate (DTPA) exhibiting nonmonotonic titration curves, where it gives an excellent fit to experimental data. We demonstrate that the titration curve of a site in a group of interacting sites can be accurately reconstructed, if titration curves of the other sites are known. The application of the new framework to the protein rubredoxin demonstrates its usefulness in calculating and interpreting complicated titration curves.
当分子中的各个可滴定位点相互作用时,其pH滴定可能比经典亨德森 - 哈塞尔巴尔赫方程描述的独立位点的滴定复杂得多。我们提出了一个新颖的框架,将任何复杂的滴定行为分解为简单的标准组分。该方法将分子中N个相互作用的位点集映射到一组N个独立、非相互作用的准位点,每个准位点由一个pK'(a)值表征。分子中单个位点的滴定曲线是对应于准位点的亨德森 - 哈塞尔巴尔赫曲线的加权和。总质子化曲线是这些亨德森 - 哈塞尔巴尔赫曲线的未加权和。我们表明,pK'(a)值对应于可从用于评估总质子吸收或释放的方法获得的去质子化常数,并建立它们与通过NMR或红外光谱获得的单个残基质子化曲线的联系。新框架在具有非单调滴定曲线的小分子二乙烯三胺五乙酸(DTPA)上进行了测试,在该测试中它与实验数据拟合得非常好。我们证明,如果已知其他位点的滴定曲线,则可以准确重建一组相互作用位点中一个位点的滴定曲线。新框架在蛋白质红氧还蛋白上的应用证明了其在计算和解释复杂滴定曲线方面的有用性。