A chemoinformatic analysis on natural glycosides with respect to biological origin and structural class†

IF 12.7 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Yinliang Chen, Yi Liu, Nianhang Chen, Yuting Jin, Ruofei Yang, Hucheng Yao and De-Xin Kong
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引用次数: 0

Abstract

Covering: up to 2022

16.19% of reported natural products (NPs) in the Dictionary of Natural Products (DNP) are glycosides. As one of the most important NPs' structural modifications, glycosylation can change the NPs' polarity, making the aglycones more amphipathic. However, until now, little is known about the general distribution profile of the natural glycosides in different biological sources or structural types. The reason, structural or species preferences of the natural glycosylation remain unclear. In this highlight, chemoinformatic methods were employed to analyze the natural glycosides from DNP, the most comprehensively annotated NP database. We found that the glycosylation ratios of NPs from plants, bacteria, animals and fungi decrease successively, which are 24.99%, 20.84%, 8.40% and 4.48%, respectively. Echinoderm-derived NPs (56.11%) are the most frequently glycosylated, while those produced by molluscs (1.55%), vertebrates (2.19%) and Rhodophyta (3.00%) are the opposite. Among the diverse structural types, a large proportion of steroids (45.19%), tannins (44.78%) and flavonoids (39.21%) are glycosides, yet aminoacids and peptides (5.16%), alkaloids (5.66%) are comparatively less glycosylated. Even within the same biological source or structural type, their glycosylation rates fluctuate drastically between sub- or cross-categories. The substitute patterns of flavonoid and terpenoid glycosides and the most frequently glycosylated scaffolds were identified. NPs with different glycosylation levels occupy different chemical spaces of physicochemical property and scaffold. These findings could help us to interpret the preference of NPs' glycosylation and investigate how NP glycosylation could aid NP-based drug discovery.

Abstract Image

天然糖苷的生物来源和结构类别的化学信息学分析
覆盖:高达202216.19%的天然产物(NPs)在天然产物词典(DNP)是糖苷。糖基化作为NPs最重要的结构修饰之一,可以改变NPs的极性,使其更具两亲性。然而,到目前为止,人们对天然糖苷在不同生物来源或结构类型中的一般分布概况知之甚少。自然糖基化的原因、结构或物种偏好尚不清楚。在这篇文章中,我们采用化学信息学方法分析了DNP(注释最全面的NP数据库)中的天然糖苷。结果表明,植物、细菌、动物和真菌的NPs糖基化率依次降低,分别为24.99%、20.84%、8.40%和4.48%。棘皮动物衍生的NPs(56.11%)最常被糖基化,而软体动物(1.55%)、脊椎动物(2.19%)和红海门动物(3.00%)产生的NPs则相反。在不同的结构类型中,类固醇(45.19%)、单宁(44.78%)和黄酮类(39.21%)是糖苷类,而氨基酸和肽(5.16%)、生物碱(5.66%)的糖基化程度相对较低。即使在相同的生物来源或结构类型中,它们的糖基化率也会在亚类或跨类之间剧烈波动。鉴定了黄酮类苷和萜类苷的替代模式以及最常糖基化的支架。不同糖基化水平的NPs占据不同的理化性质和支架的化学空间。这些发现可以帮助我们解释NP糖基化的偏好,并探讨NP糖基化如何帮助基于NP的药物发现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Central Science
ACS Central Science Chemical Engineering-General Chemical Engineering
CiteScore
25.50
自引率
0.50%
发文量
194
审稿时长
10 weeks
期刊介绍: ACS Central Science publishes significant primary reports on research in chemistry and allied fields where chemical approaches are pivotal. As the first fully open-access journal by the American Chemical Society, it covers compelling and important contributions to the broad chemistry and scientific community. "Central science," a term popularized nearly 40 years ago, emphasizes chemistry's central role in connecting physical and life sciences, and fundamental sciences with applied disciplines like medicine and engineering. The journal focuses on exceptional quality articles, addressing advances in fundamental chemistry and interdisciplinary research.
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