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In silico study toward the identification of new and safe potential inhibitors of photosynthetic electron transport

机译:在计算机上研究鉴定新的和安全的光合电子传输潜在抑制剂

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To address the rising global demand for food, it is necessary to search for new herbicides that can control resistant weeds. We performed a 2D-quantitative structure-activity relationship (QSAR) study to predict compounds with photosynthesis-inhibitory activity. A data set of 44 compounds (quinolines and naphthalenes), which are described as photosynthetic electron transport (PET) inhibitors, was used. The obtained model was approved in internal and external validation tests. 2D Similarity-based virtual screening was performed and 64 compounds were selected from the ZINC database. By using the VEGA QSAR software, 48 compounds were shown to have potential toxic effects (mutagenicity and carcinogenicity). Therefore, the model was also tested using a set of 16 molecules obtained by a similarity search of the ZINC database. Six compounds showed good predicted inhibition of PET. The obtained model shows potential utility in the design of new PET inhibitors, and the hit compounds found by virtual screening are novel bicyclic scaffolds of this class.
机译:为了解决全球对食品日益增长的需求,有必要寻找可以控制抗性杂草的新型除草剂。我们进行了2D定量结构-活性关系(QSAR)研究,以预测具有光合作用抑制活性的化合物。使用了44种化合物(喹啉和萘)的数据集,这些化合物被描述为光合电子传输(PET)抑制剂。获得的模型在内部和外部验证测试中得到批准。进行了基于2D相似度的虚拟筛选,并从ZINC数据库中选择了64种化合物。通过使用VEGA QSAR软件,显示了48种化合物具有潜在的毒性作用(致突变性和致癌性)。因此,还使用一组通过ZINC数据库的相似性搜索获得的16个分子对模型进行了测试。六种化合物显示出对PET的良好预测抑制作用。获得的模型显示出在设计新型PET抑制剂中的潜在效用,通过虚拟筛选发现的命中化合物是此类的新型双环支架。

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