Prioritised identification of structural classes of natural products from higher plants in the expedition of antimalarial drug discovery

IF 4.8 3区 化学 Q1 CHEMISTRY, MEDICINAL Natural Products and Bioprospecting Pub Date : 2023-10-12 DOI:10.1007/s13659-023-00402-2
Phanankosi Moyo, Luke Invernizzi, Sephora M. Mianda, Wiehan Rudolph, Andrew W. Andayi, Mingxun Wang, Neil R. Crouch, Vinesh J. Maharaj
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Abstract

The emergence and spread of drug-recalcitrant Plasmodium falciparum parasites threaten to reverse the gains made in the fight against malaria. Urgent measures need to be taken to curb this impending challenge. The higher plant-derived sesquiterpene, quinoline alkaloids, and naphthoquinone natural product classes of compounds have previously served as phenomenal chemical scaffolds from which integral antimalarial drugs were developed. Historical successes serve as an inspiration for the continued investigation of plant-derived natural products compounds in search of novel molecular templates from which new antimalarial drugs could be developed. The aim of this study was to identify potential chemical scaffolds for malaria drug discovery following analysis of historical data on phytochemicals screened in vitro against P. falciparum. To identify these novel scaffolds, we queried an in-house manually curated database of plant-derived natural product compounds and their in vitro biological data. Natural products were assigned to different structural classes using NPClassifier. To identify the most promising chemical scaffolds, we then correlated natural compound class with bioactivity and other data, namely (i) potency, (ii) resistance index, (iii) selectivity index and (iv) physicochemical properties. We used an unbiased scoring system to rank the different natural product classes based on the assessment of their bioactivity data. From this analysis we identified the top-ranked natural product pathway as the alkaloids. The top three ranked super classes identified were (i) pseudoalkaloids, (ii) naphthalenes and (iii) tyrosine alkaloids and the top five ranked classes (i) quassinoids (of super class triterpenoids), (ii) steroidal alkaloids (of super class pseudoalkaloids) (iii) cycloeudesmane sesquiterpenoids (of super class triterpenoids) (iv) isoquinoline alkaloids (of super class tyrosine alkaloids) and (v) naphthoquinones (of super class naphthalenes). Launched chemical space of these identified classes of compounds was, by and large, distinct from that of ‘legacy’ antimalarial drugs. Our study was able to identify chemical scaffolds with acceptable biological properties that are structurally different from current and previously used antimalarial drugs. These molecules have the potential to be developed into new antimalarial drugs.

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在抗疟药物发现的探险中,优先鉴定高等植物天然产物的结构类别。
抗药性恶性疟原虫的出现和传播有可能逆转在抗击疟疾方面取得的成果。需要采取紧急措施来遏制这一迫在眉睫的挑战。高等植物衍生的倍半萜、喹啉生物碱和萘醌天然产物类化合物以前曾是开发整体抗疟药物的非凡化学支架。历史上的成功启发了人们继续研究植物衍生的天然产物化合物,以寻找新的分子模板,从而开发出新的抗疟药物。本研究的目的是在分析体外筛选的抗恶性疟原虫植物化学物质的历史数据后,确定用于疟疾药物发现的潜在化学支架。为了鉴定这些新型支架,我们查询了一个内部手动策划的植物衍生天然产物化合物及其体外生物学数据数据库。使用NPClassifier将天然产物划分为不同的结构类别。为了确定最有前景的化学支架,我们将天然化合物类别与生物活性和其他数据相关联,即(i)效力、(ii)抗性指数、(iii)选择性指数和(iv)物理化学性质。我们使用了一个无偏的评分系统,根据对不同天然产物生物活性数据的评估对其进行排名。从这一分析中,我们确定了排名第一的天然产物途径为生物碱。确定的排名前三的超类是(i)假生物碱、(ii)萘和(iii)酪氨酸生物碱,(ii)甾体生物碱(超类假生物碱)(iii)环连丝烷倍半萜(超类三萜)(iv)异喹啉生物碱(超级酪氨酸生物碱)和(v)萘醌(超类萘)。总的来说,这些已确定类别的化合物的化学空间与“遗留”抗疟药物的化学空间不同。我们的研究能够鉴定出具有可接受生物特性的化学支架,这些支架在结构上与目前和以前使用的抗疟药物不同。这些分子有潜力被开发成新的抗疟药物。
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来源期刊
Natural Products and Bioprospecting
Natural Products and Bioprospecting CHEMISTRY, MEDICINAL-
CiteScore
8.30
自引率
2.10%
发文量
39
审稿时长
13 weeks
期刊介绍: Natural Products and Bioprospecting serves as an international forum for essential research on natural products and focuses on, but is not limited to, the following aspects: Natural products: isolation and structure elucidation Natural products: synthesis Biological evaluation of biologically active natural products Bioorganic and medicinal chemistry Biosynthesis and microbiological transformation Fermentation and plant tissue cultures Bioprospecting of natural products from natural resources All research articles published in this journal have undergone rigorous peer review. In addition to original research articles, Natural Products and Bioprospecting publishes reviews and short communications, aiming to rapidly disseminate the research results of timely interest, and comprehensive reviews of emerging topics in all the areas of natural products. It is also an open access journal, which provides free access to its articles to anyone, anywhere.
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