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R-SIM: A Database of Binding Affinities for RNA-small Molecule Interactions

机译:R-SIM:RNA-小分子相互作用的结合亲和力数据库

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? 2022 Elsevier LtdRibonucleic acids (RNAs) are involved in a multitude of crucial cellular functions by acting as a central conduit for information transfer. Due to their essential and versatile functional roles in the cell, RNAs have also been implicated in multiple disease conditions of therapeutic relevance including cancers, bacterial and viral infections and neurodegenerative disorders. Recently, several approaches have emerged to tap into the potentially unexplored regions of the druggable genome, which refers to the genes and gene products that are focused during drug development. For example, considering RNAs as viable alternative therapeutic targets for drug development can potentially expand the range of therapeutic targets. Consequently, the availability of adequate binding affinity measurements for RNA-small molecule interactions is essential to understand target selectivity and design more potent RNA-targeting drug-like molecules. To facilitate this growing need, we have curated a database of experimentally validated RNA-small molecule interactions, called RNA-Small molecule Interaction Miner (R-SIM). Each entry in R-SIM provides comprehensive information on sequence, structure and classification of the RNA target, various physicochemical properties of the small molecule, binding affinity value and corresponding experimental conditions, three-dimensional structure (experimental or modelled) of the RNA-small molecule complex, and the literature source for the data. It also provides a user-friendly web interface with several options for search, display, sorting, visualization, download and upload of the data. R-SIM is freely available at: https://web.iitm.ac.in/bioinfo2/R_SIM/index.html. We envisage that R-SIM has several potential applications in understanding and accelerating the development of novel RNA-targeted small molecule therapeutics.
机译:?2022 爱思唯尔有限公司核糖核酸 (RNA) 通过充当信息传递的中心管道参与多种关键的细胞功能。由于RNA在细胞中具有重要和多功能的功能作用,RNA还与多种与治疗相关的疾病有关,包括癌症、细菌和病毒感染以及神经退行性疾病。最近,出现了几种方法来挖掘可成药基因组中潜在的未开发区域,这是指在药物开发过程中关注的基因和基因产物。例如,将RNA视为药物开发的可行替代治疗靶点,可能会扩大治疗靶点的范围。因此,对RNA-小分子相互作用进行充分的结合亲和力测量对于了解靶标选择性和设计更有效的RNA靶向药物样分子至关重要。为了满足这一不断增长的需求,我们策划了一个经过实验验证的 RNA-小分子相互作用数据库,称为 RNA-小分子相互作用矿工 (R-SIM)。R-SIM中的每个条目都提供了有关RNA靶标的序列、结构和分类、小分子的各种物理化学性质、结合亲和力值和相应的实验条件、RNA-小分子复合物的三维结构(实验或建模)以及数据文献来源的全面信息。它还提供了一个用户友好的 Web 界面,其中包含用于搜索、显示、排序、可视化、下载和上传数据的多个选项。R-SIM可在以下位置免费获得:https://web.iitm.ac.in/bioinfo2/R_SIM/index.html。我们认为R-SIM在理解和加速新型RNA靶向小分子疗法的开发方面具有多种潜在应用。

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