Dimitriou-Christidis Petros, Autenrieth Robin L, Abraham Michael H
Environmental Engineering Division, Department of Civil Engineering, Texas A&M University, 3136 TAMU, College Station, Texas 77843-3136, USA.
Environ Toxicol Chem. 2008 Jul;27(7):1496-504. doi: 10.1897/07-498.1.
Quantitative structure-activity relationships (QSARs) were developed for three Monod-type parameters--qmax, Ks, and qmax/Ks--that express the kinetics of polycyclic aromatic hydrocarbon (PAH) biotransformation by Sphingomonas paucimobilis strain EPA505. The training sets contained high-quality experimental values of the kinetic parameters for 20 unsubstituted and methylated PAHs as well as values of 41 meaningful molecular descriptors. A genetic function approximation algorithm was used to develop the QSARs. Statistical evaluation of the developed QSARs showed that the relationships are statistically significant and satisfy the assumptions of linear-regression analysis. The Organization for Economic Co-operation and Development principles for (Q)SAR validation were followed to evaluate the developed QSARs, which showed that the QSARs are valid. The QSARs contain spatial, spatial and electronic, topological, and thermodynamic molecular descriptors. Whereas spatial descriptors were essential in explaining biotransformation kinetics, electronic descriptors were not. Mechanistic interpretation of the QSARs resulted in evidence that is consistent with the hypothesis of membrane transport as being the rate-limiting process in PAH biotransformation by strain EPA505. The present study demonstrates the value of QSAR not only as a predictive tool but also as a framework for understanding the mechanisms governing biodegradation at the molecular level.
针对三种莫诺德型参数——qmax、Ks和qmax/Ks,建立了定量构效关系(QSAR),这些参数表征了少动鞘氨醇菌EPA505菌株对多环芳烃(PAH)的生物转化动力学。训练集包含20种未取代和甲基化多环芳烃动力学参数的高质量实验值以及41个有意义的分子描述符的值。采用遗传函数近似算法建立QSAR。对所建立的QSAR进行统计评估表明,这些关系具有统计学意义且满足线性回归分析的假设。遵循经济合作与发展组织(Q)SAR验证原则对所建立的QSAR进行评估,结果表明这些QSAR是有效的。这些QSAR包含空间、空间和电子、拓扑和热力学分子描述符。虽然空间描述符对于解释生物转化动力学至关重要,但电子描述符并非如此。对QSAR的机理解释得到的证据与膜转运是EPA505菌株PAH生物转化限速过程这一假设一致。本研究证明了QSAR不仅作为一种预测工具,而且作为在分子水平上理解生物降解调控机制的框架的价值。