【2h】

Atom mapping with constraint programming

机译:约束编程的原子映射

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摘要

Chemical reactions are rearrangements of chemical bonds. Each atom in an educt molecule thus appears again in a specific position of one of the reaction products. This bijection between educt and product atoms is not reported by chemical reaction databases, however, so that the “Atom Mapping Problem” of finding this bijection is left as an important computational task for many practical applications in computational chemistry and systems biology. Elementary chemical reactions feature a cyclic imaginary transition state (ITS) that imposes additional restrictions on the bijection between educt and product atoms that are not taken into account by previous approaches. We demonstrate that Constraint Programming is well-suited to solving the Atom Mapping Problem in this setting. The performance of our approach is evaluated for a manually curated subset of chemical reactions from the KEGG database featuring various ITS cycle layouts and reaction mechanisms.Electronic supplementary materialThe online version of this article (doi:10.1186/s13015-014-0023-3) contains supplementary material, which is available to authorized users.
机译:化学反应是化学键的重排。因此,离析物分子中的每个原子再次出现在反应产物之一的特定位置。然而,化学反应数据库并未报告离析物与产物原子之间的这种双射,因此,对于许多在计算化学和系统生物学中的实际应用而言,找到这种双射的“原子映射问题”仍然是一项重要的计算任务。基本化学反应具有循环虚构过渡态(ITS),该构想对离析物与产物原子之间的双向射流施加了其他限制,而先前的方法并未对此加以考虑。我们证明约束编程非常适合解决这种情况下的原子映射问题。我们从KEGG数据库中手动整理的化学反应子集(具有各种ITS循环布局和反应机制)评估了我们方法的性能。电子补充材料本文的在线版本(doi:10.1186 / s13015-014-0023-3)包含补充材料,授权用户可以使用。

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