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Characterizing the diversity and biological relevance of the MLPCN assay manifold and screening set

机译:表征MLPCN检测歧管和筛选装置的多样性和生物学相关性

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The NIH Molecular Libraries Initiative (MLI), launched in 2004 with initial goals of identifying chemical probes for characterizing gene function and druggability, has produced PubChem, a chemical genomics knowledgebase for fostering translation of basic research into new therapeutic strategies. This paper assesses progress toward these goals by evaluating MLI target novelty and propensity for undergoing biochemically or therapeutically relevant modulations and the degree of chemical diversity and biogenic bias inherent in the MLI screening set. Our analyses suggest that while MLI target selection has not yet been fully optimized for biochemical diversity, it covers biologically interesting pathway space that complements established drug targets. We find the MLI screening set to be chemically diverse and to have greater biogenic bias than comparable collections of commercially available compounds. Biogenic enhancements such as incorporation of more metabolite-like chemotypes are suggested.
机译:美国国立卫生研究院分子图书馆计划(MLI)于2004年启动,其最初目标是确定可表征基因功能和可药用性的化学探针,该公司已建立了PubChem,这是一个化学基因组学知识库,用于促进将基础研究转化为新的治疗策略。本文通过评估MLI靶标新颖性和经历生物化学或治疗相关调节的倾向以及MLI筛查组固有的化学多样性和生物成因偏倚程度,来评估实现这些目标的进展。我们的分析表明,尽管尚未针对生物化学多样性对MLI靶标选择进行全面优化,但它涵盖了对既定药物靶标进行补充的生物学上感兴趣的途径空间。我们发现MLI筛选集在化学上是多种多样的,并且比可比较的市售化合物集合具有更大的生物成因偏差。建议进行生物增强,例如引入更多类似代谢物的化学型。

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