Department of Chemistry and Biochemistry, Stephenson Life Sciences Research Center, and Natural Products Discovery Group and Institute for Natural Products Applications and Research Technologies, University of Oklahoma, Norman, Oklahoma 73019, United States.
Department of Pharmacology, University of Texas Health Science Center, San Antonio, Texas 78229, United States.
J Nat Prod. 2021 Mar 26;84(3):750-761. doi: 10.1021/acs.jnatprod.0c00946. Epub 2020 Nov 23.
A fundamental factor in natural product drug discovery programs is the necessity to identify the active component(s) from complex chemical mixtures. Whereas this has traditionally been accomplished using bioassay-guided fractionation, we questioned whether alternative techniques could supplement and, in some cases, even supplant this approach. We speculated that a combination of ligand-fishing methods and modern analytical tools (e.g., LC-MS and online natural product databases) offered a route to enhance natural product drug discovery. Herein, a candidate solution referred to as the ickety-split igand-ffinity-based olecular ngling ystem (LLAMAS) is described. This approach utilizes an ultrafiltration-based LC-PDA-MS/MS-guided DNA-binding assay in combination with the (i) Global Natural Products Social Molecular Networking, (ii) Dictionary of Natural Products, and (iii) SciFinder platforms to identify DNA binders in complex chemical mixtures. LLAMAS was initially vetted in tests using known small-molecule DNA binders and then optimized to a 96-well plate-based format. A set of 332 plant samples used in traditional Chinese medicine was screened for DNA-binding activity with LLAMAS, resulting in the identification of seven DNA-binding molecules, including berberine (), palmatine (), coptisine (), fangchinoline (), tetrandrine (), daurisoline (), and dauricine (). These results demonstrate that LLAMAS is an effective natural product discovery platform for the efficient identification and dereplication of DNA-binding molecules from complex mixtures.
在天然产物药物发现计划中,一个基本因素是必须从复杂的化学混合物中鉴定出活性成分。虽然传统上这是通过生物测定指导的分馏来完成的,但我们质疑是否有替代技术可以补充,甚至在某些情况下取代这种方法。我们推测,结合配体捕捞方法和现代分析工具(例如 LC-MS 和在线天然产物数据库)可以提供一种增强天然产物药物发现的途径。在此,描述了一种称为“ickety-split 配体亲和力分子垂钓系统(LLAMAS)”的候选解决方案。这种方法利用基于超滤的 LC-PDA-MS/MS 引导的 DNA 结合测定法,结合 (i) 全球天然产物社会分子网络、(ii) 天然产物词典和 (iii) SciFinder 平台,以鉴定复杂化学混合物中的 DNA 结合物。LLAMAS 最初使用已知的小分子 DNA 结合物进行了测试,然后优化为基于 96 孔板的格式。使用 LLAMAS 对用于中药的 332 种植物样品进行了 DNA 结合活性筛选,鉴定出了七种 DNA 结合分子,包括小檗碱 ()、巴马汀 ()、黄连碱 ()、蝙蝠葛苏林碱 ()、粉防己碱 ()、蝙蝠葛诺林碱 () 和蝙蝠葛碱 ()。这些结果表明,LLAMAS 是一种有效的天然产物发现平台,可用于从复杂混合物中有效鉴定和鉴定 DNA 结合分子。