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首页> 外文期刊>Journal of chemical information and modeling >Algorithmic Analysis of Cahn-IngoId-Prelog Rules of Stereochemistry: Proposals for Revised Rules and a Guide for Machine Implementation
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Algorithmic Analysis of Cahn-IngoId-Prelog Rules of Stereochemistry: Proposals for Revised Rules and a Guide for Machine Implementation

机译:CAHN-Ingoid-Progog规则的算法分析立体化学规则:修订规则的提案和机器实施指南

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The most recent version of the Cahn Ingold Prelog rules for the determination of stereodescriptors as described in Nomenclature of Organic Chemistry: IUPAC Recommendations and Preferred Names 2013 (the "Blue Book"; Favre and Powell. Royal Society of Chemistry, 2014; http://dx.doi.org/10.1039/9781849733069) were analyzed by an international team of cheminformatics software developers. Algorithms for machine implementation were designed, tested, and cross-validated. Deficiencies in Sequence Rules 1b and 2 were found, and proposed language for their modification is presented. A concise definition of an additional rule ("Rule 6", below) is proposed, which succinctly covers several cases only tangentially mentioned in the 2013 recommendations. Each rule is discussed from the perspective of machine implementation. The four resultant implementations are supported by a 300-compound validation suite in both 2D and 3D structure data file (SDF) format as well as SMILES (https://cipvalidationsuite.github.io/ValidationSuite). The validation suites include all significant examples in Chapter 9 of the Blue Book, as well as several additional structures that highlight more complex aspects of the rules not addressed or not clearly analyzed in that work. These additional structures support a case for the need for modifications to the Sequence Rules.
机译:Cahn Ingold的最新版本的Cahn Ingold预曲线规则,用于测定有机化学命名法中描述的立体仪器:Iupac建议和首选姓名2013(“蓝书”; Favre和Powell。皇家化学学会,2014; http:/ /dx.doi.org/10.1039/9781849733069由CheminFormatics软件开发商的国际团队进行分析。设计,测试和交叉验证的机器实现算法。找到序列规则1B和2中的缺陷,并提出了修改的提议语言。提出了一个简明的定义附加规则(下面的“规则6”),简明扼要地涵盖了2013年建议中切实相切的几种情况。从机器实现的角度讨论了每个规则。在2D和3D结构数据文件(SDF)格式以及SMILES(https://cipvalidationsuite.github.io/validationsuite)中,通过300复合验证套件支持四个结果实现。验证套件包括蓝图第9章中的所有重要例子,以及几个额外的结构,突出了未在该工作中清楚地分析的规则的更复杂方面。这些附加结构支持需要修改序列规则的情况。

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