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首页> 外文期刊>BMC Bioinformatics >Enumeration method for tree-like chemical compounds with benzene rings and naphthalene rings by breadth-first search order
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Enumeration method for tree-like chemical compounds with benzene rings and naphthalene rings by breadth-first search order

机译:通过广度优先搜索顺序枚举具有苯环和萘环的树状化合物的方法

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Background Drug discovery and design are important research fields in bioinformatics. Enumeration of chemical compounds is essential not only for the purpose, but also for analysis of chemical space and structure elucidation. In our previous study, we developed enumeration methods BfsSimEnum and BfsMulEnum for tree-like chemical compounds using a tree-structure to represent a chemical compound, which is limited to acyclic chemical compounds only. Results In this paper, we extend the methods, and develop BfsBenNaphEnum that can enumerate tree-like chemical compounds containing benzene rings and naphthalene rings, which include benzene isomers and naphthalene isomers such as ortho, meta, and para, by treating a benzene ring as an atom with valence six, instead of a ring of six carbon atoms, and treating a naphthalene ring as two benzene rings having a special bond. We compare our method with MOLGEN 5.0, which is a well-known general purpose structure generator, to enumerate chemical structures from a set of chemical formulas in terms of the number of enumerated structures and the computational time. The result suggests that our proposed method can reduce the computational time efficiently. Conclusions We propose the enumeration method BfsBenNaphEnum for tree-like chemical compounds containing benzene rings and naphthalene rings as cyclic structures. BfsBenNaphEnum was from 50 times to 5,000,000 times faster than MOLGEN 5.0 for instances with 8 to 14 carbon atoms in our experiments.
机译:背景技术药物的发现和设计是生物信息学中的重要研究领域。化合物的枚举不仅对于此目的至关重要,而且对于分析化学空间和阐明结构也是必不可少的。在先前的研究中,我们使用树结构表示一种化合物,开发了用于树状化合物的枚举方法BfsSimEnum和BfsMulEnum,该方法仅限于无环化合物。结果在本文中,我们扩展了方法,并开发了BfsBenNaphEnum,该方法可以通过将苯环处理为,以枚举包含苯环和萘环的树状化合物,包括苯异构体和邻位,间位和对位等萘类异构体。取代六个碳原子的环,取代一个六价的原子,并将萘环视为两个具有特殊键的苯环。我们将我们的方法与著名的通用结构生成器MOLGEN 5.0进行比较,以从一组化学公式中枚举结构的数量和计算时间来枚举化学结构。结果表明,本文提出的方法可以有效地减少计算时间。结论我们提出了以苯环和萘环为环状结构的树状化合物的枚举方法BfsBenNaphEnum。在我们的实验中,对于具有8至14个碳原子的实例,BfsBenNaphEnum比MOLGEN 5.0快50倍至5,000,000倍。

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