Alkorta Ibon, Popelier Paul L A
Instituto de Química Médica (IQM-CSIC), Juan de la Cierva, 3, 28006 Madrid (Spain).
Chemphyschem. 2015 Feb 2;16(2):465-9. doi: 10.1002/cphc.201402711. Epub 2014 Nov 7.
Remarkably simple yet effective linear free energy relationships were discovered between a single ab initio computed bond length in the gas phase and experimental pKa values in aqueous solution. The formation of these relationships is driven by chemical features such as functional groups, meta/para substitution and tautomerism. The high structural content of the ab initio bond length makes a given data set essentially divide itself into high correlation subsets (HCSs). Surprisingly, all molecules in a given high correlation subset share the same conformation in the gas phase. Here we show that accurate pKa values can be predicted from such HCSs. This is achieved within an accuracy of 0.2 pKa units for 5 drug molecules.
在气相中通过从头算得到的单个键长与水溶液中的实验pKa值之间,发现了非常简单却有效的线性自由能关系。这些关系的形成是由诸如官能团、间位/对位取代和互变异构等化学特征驱动的。从头算键长的高结构含量使得给定的数据集本质上会自行划分为高相关子集(HCSs)。令人惊讶的是,给定高相关子集中的所有分子在气相中具有相同的构象。在此我们表明,可以从这些高相关子集中预测准确的pKa值。对于5种药物分子,这一预测的准确度达到了0.2个pKa单位。