Ozyurt A Sinem, Selby Thomas L
Department of Chemistry, University of Central Florida, Orlando, Florida 32836-2366, USA.
Proteins. 2008 Jul;72(1):184-96. doi: 10.1002/prot.21907.
This study describes a method to computationally assess the function of homologous enzymes through small molecule binding interaction energy. Three experimentally determined X-ray structures and four enzyme models from ornithine cyclo-deaminase, alanine dehydrogenase, and mu-crystallin were used in combination with nine small molecules to derive a function score (FS) for each enzyme-model combination. While energy values varied for a single molecule-enzyme combination due to differences in the active sites, we observe that the binding energies for the entire pathway were proportional for each set of small molecules investigated. This proportionality of energies for a reaction pathway appears to be dependent on the amino acids in the active site and their direct interactions with the small molecules, which allows a function score (FS) to be calculated to assess the specificity of each enzyme. Potential of mean force (PMF) calculations were used to obtain the energies, and the resulting FS values demonstrate that a measurement of function may be obtained using differences between these PMF values. Additionally, limitations of this method are discussed based on: (a) larger substrates with significant conformational flexibility; (b) low homology enzymes; and (c) open active sites. This method should be useful in accurately predicting specificity for single enzymes that have multiple steps in their reactions and in high throughput computational methods to accurately annotate uncharacterized proteins based on active site interaction analysis.
本研究描述了一种通过小分子结合相互作用能来计算评估同源酶功能的方法。将鸟氨酸环脱氨酶、丙氨酸脱氢酶和μ-晶状体蛋白的三个实验测定的X射线结构和四个酶模型与九个小分子结合使用,以得出每个酶-模型组合的功能评分(FS)。虽然由于活性位点的差异,单个分子-酶组合的能量值有所不同,但我们观察到,对于所研究的每组小分子,整个反应途径的结合能是成比例的。反应途径能量的这种比例关系似乎取决于活性位点中的氨基酸及其与小分子的直接相互作用,这使得可以计算功能评分(FS)来评估每种酶的特异性。使用平均力势(PMF)计算来获得能量,所得的FS值表明,可以利用这些PMF值之间的差异来获得功能测量值。此外,基于以下几点讨论了该方法的局限性:(a)具有显著构象灵活性的较大底物;(b)低同源性酶;(c)开放的活性位点。该方法对于准确预测反应中有多个步骤的单一酶的特异性以及基于活性位点相互作用分析准确注释未表征蛋白质的高通量计算方法应该是有用的。