Department of Chemistry, Supercomputing Institute, and Chemical Theory Center, University of Minnesota, 207 Pleasant St. SE, Minneapolis, MN, 55455, USA.
Novartis Institutes for BioMedical Research, Metabolism, and Pharmacokinetics (MAP), 250 Massachusetts Ave., Cambridge, MA, 02139, USA.
J Am Soc Mass Spectrom. 2017 Feb;28(2):278-285. doi: 10.1007/s13361-016-1536-4. Epub 2016 Nov 10.
A method is developed for the prediction of mass spectral ion counts of drug-like molecules using in silico calculated chemometric data. Various chemometric data, including polar and molecular surface areas, aqueous solvation free energies, and gas-phase and aqueous proton affinities were computed, and a statistically significant relationship between measured mass spectral ion counts and the combination of aqueous proton affinity and total molecular surface area was identified. In particular, through multilinear regression of ion counts on predicted chemometric data, we find that log(MS ion counts) = -4.824 + c •PA + c •SA, where PA is the aqueous proton affinity of the molecule computed at the SMD(aq)/M06-L/MIDI!//M06-L/MIDI! level of electronic structure theory, SA is the total surface area of the molecule in its conjugate base form, and c and c have values of -3.912 × 10 mol kcal and 3.682 × 10 Å. On a 66-molecule training set, this regression exhibits a multiple R value of 0.791 with p values for the intercept, c , and c of 1.4 × 10, 4.3 × 10, and 2.5 × 10, respectively. Application of this regression to an 11-molecule test set provides a good correlation of prediction with experiment (R = 0.905) albeit with a systematic underestimation of about 0.2 log units. This method may prove useful for semiquantitative analysis of drug metabolites for which MS response factors or authentic standards are not readily available. Graphical Abstract ᅟ.
开发了一种使用计算化学计量学数据预测类药性分子质谱离子计数的方法。计算了各种化学计量学数据,包括极性和分子表面积、水溶剂化自由能以及气相和水相质子亲和力,并确定了测量的质谱离子计数与水相质子亲和力和总分子表面积组合之间存在统计学显著关系。特别是,通过对预测化学计量学数据的离子计数进行多元线性回归,我们发现 log(MS 离子计数) = -4.824 + c •PA + c •SA,其中 PA 是分子在 SMD(aq)/M06-L/MIDI!//M06-L/MIDI! 水平下计算的水相质子亲和力电子结构理论,SA 是分子在其共轭碱形式下的总表面积,c 和 c 的值分别为-3.912 × 10 mol kcal 和 3.682 × 10 Å。在 66 个分子的训练集上,该回归的多重 R 值为 0.791,截距、c 和 c 的 p 值分别为 1.4 × 10、4.3 × 10 和 2.5 × 10。将此回归应用于 11 个分子测试集提供了与实验的良好相关性(R = 0.905),尽管存在约 0.2 个对数单位的系统低估。对于那些不容易获得 MS 响应因子或真实标准品的药物代谢物的半定量分析,这种方法可能证明是有用的。图摘要 ᅟ。