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捕捉大自然的多样性。

Capturing nature's diversity.

作者信息

Pascolutti Mauro, Campitelli Marc, Nguyen Bao, Pham Ngoc, Gorse Alain-Dominique, Quinn Ronald J

机构信息

Eskitis Institute for Drug Discovery, Griffith University, Brisbane, Queensland, Australia.

Eskitis Institute for Drug Discovery, Griffith University, Brisbane, Queensland, Australia; QFAB Bioinformatics, The University of Queensland, Brisbane, Queensland, Australia.

出版信息

PLoS One. 2015 Apr 22;10(4):e0120942. doi: 10.1371/journal.pone.0120942. eCollection 2015.

Abstract

Natural products are universally recognized to contribute valuable chemical diversity to the design of molecular screening libraries. The analysis undertaken in this work, provides a foundation for the generation of fragment screening libraries that capture the diverse range of molecular recognition building blocks embedded within natural products. Physicochemical properties were used to select fragment-sized natural products from a database of known natural products (Dictionary of Natural Products). PCA analysis was used to illustrate the positioning of the fragment subset within the property space of the non-fragment sized natural products in the dataset. Structural diversity was analysed by three distinct methods: atom function analysis, using pharmacophore fingerprints, atom type analysis, using radial fingerprints, and scaffold analysis. Small pharmacophore triplets, representing the range of chemical features present in natural products that are capable of engaging in molecular interactions with small, contiguous areas of protein binding surfaces, were analysed. We demonstrate that fragment-sized natural products capture more than half of the small pharmacophore triplet diversity observed in non fragment-sized natural product datasets. Atom type analysis using radial fingerprints was represented by a self-organizing map. We examined the structural diversity of non-flat fragment-sized natural product scaffolds, rich in sp3 configured centres. From these results we demonstrate that 2-ring fragment-sized natural products effectively balance the opposing characteristics of minimal complexity and broad structural diversity when compared to the larger, more complex fragment-like natural products. These naturally-derived fragments could be used as the starting point for the generation of a highly diverse library with the scope for further medicinal chemistry elaboration due to their minimal structural complexity. This study highlights the possibility to capture a high proportion of the individual molecular interaction motifs embedded within natural products using a fragment screening library spanning 422 structural clusters and comprised of approximately 2800 natural products.

摘要

天然产物普遍被认为能为分子筛选文库的设计贡献有价值的化学多样性。本研究中所进行的分析,为生成片段筛选文库奠定了基础,该文库能够捕获天然产物中嵌入的各种分子识别构建块。利用物理化学性质从已知天然产物数据库(《天然产物词典》)中选择片段大小的天然产物。主成分分析用于说明数据集中片段子集在非片段大小天然产物性质空间中的定位。通过三种不同方法分析结构多样性:使用药效团指纹的原子功能分析、使用径向指纹的原子类型分析和支架分析。分析了代表天然产物中能够与蛋白质结合表面的小连续区域进行分子相互作用的化学特征范围的小药效团三联体。我们证明,片段大小的天然产物捕获了在非片段大小天然产物数据集中观察到的超过一半的小药效团三联体多样性。使用径向指纹的原子类型分析由自组织映射表示。我们研究了富含sp3构型中心的非平面片段大小天然产物支架的结构多样性。从这些结果我们证明,与更大、更复杂的类片段天然产物相比,二环片段大小的天然产物有效地平衡了最小复杂性和广泛结构多样性这两个相反的特征。这些天然衍生的片段由于其最小的结构复杂性,可作为生成高度多样化文库的起点,具有进一步进行药物化学修饰的空间。这项研究突出了使用一个跨越422个结构簇、由大约2800种天然产物组成的片段筛选文库来捕获天然产物中嵌入的高比例单个分子相互作用基序的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9093/4406718/35b610970c85/pone.0120942.g001.jpg

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