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Identification of bioprivileged molecules: expansion of a computational approach to broader molecular space

机译:bioprivileged分子的识别:扩张的更广泛的计算方法分子的空间

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As interest in biobased chemicals grows, and their application space expands, computational tools to navigate molecule space as a complement to experimental approaches are imperative. This work expands upon previous work that identified candidate bioprivileged molecules from the C6HxOy (C6) subspace. It refines the framework that was developed previously to better refine the molecules according to their biological origin and applies it to three new subspaces of chemical structure: C4HxOy (C4), C5HxOy (C5), and C7HxOy (C7). For C5 and C7, roughly the top 100 bioprivileged candidates were identified, and the enhanced framework was applied to recast slightly the previous list of the top 100 C6 molecules. In addition, all top candidates were analyzed for their key functional moieties using a random forest model, and this algorithm was applied to compare the functional group space occupied by bioprivileged molecules of various databases of molecules with a focus on evaluating how closely the molecules were aligned with those known to biology. Furthermore, with the present work's focus on automation and data science principles, the framework can be easily expanded to include other chemical formulae to screen for bioprivileged candidates. This in turn facilitates the retrosynthesis process inherent in the framework to dentify those bioprivileged intermediates in other subspaces that lead to target molecules.
机译:随着biobased化学的兴趣,他们的应用程序空间的扩张,计算工具导航分子空间作为补充实验方法是必要的。扩大在以前的确认工作候选人从C6HxOy bioprivileged分子(C6)子空间。开发之前更好的改进根据他们的生物性分子它适用于三个新的子空间的化学结构:C4HxOy (C4) C5HxOy (C5)和C7HxOy(C7)。bioprivileged候选人被确定,增强框架应用于重塑略前面的100个港口名单之中C6分子。此外,所有候选人进行了分析主要功能使用一个随机半个森林模型,该算法被应用到占用的空间比较官能团bioprivileged分子的各种数据库分子与评估如何密切关注与已知分子是一致的生物学。专注于自动化和数据科学的原则,该框架可以很容易地扩展到包括其他化学公式屏幕bioprivileged候选人。促进retrosynthesis过程固有的在框架dentify bioprivileged在其他子空间导致中间体目标分子。

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