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真菌色酮类化合物的研究进展——极具应用前景的天然代谢产物:生物合成、生物活性,以及作为人葡萄糖转运蛋白 1 抑制剂的计算机模拟评价。

Advances in Fungal Phenaloenones-Natural Metabolites with Great Promise: Biosynthesis, Bioactivities, and an In Silico Evaluation of Their Potential as Human Glucose Transporter 1 Inhibitors.

机构信息

Department of Chemistry, Preparatory Year Program, Batterjee Medical College, Jeddah 21442, Saudi Arabia.

Department of Pharmacognosy, Faculty of Pharmacy, Assiut University, Assiut 71526, Egypt.

出版信息

Molecules. 2022 Oct 11;27(20):6797. doi: 10.3390/molecules27206797.

Abstract

Phenaloenones are structurally unique aromatic polyketides that have been reported in both microbial and plant sources. They possess a hydroxy perinaphthenone three-fused-ring system and exhibit diverse bioactivities, such as cytotoxic, antimicrobial, antioxidant, and anti-HIV properties, and tyrosinase, α-glucosidase, lipase, AchE (acetylcholinesterase), indoleamine 2,3-dioxygenase 1, angiotensin-I-converting enzyme, and tyrosine phosphatase inhibition. Moreover, they have a rich nucleophilic nucleus that has inspired many chemists and biologists to synthesize more of these related derivatives. The current review provides an overview of the reported phenalenones with a fungal origin, including their structures, sources, biosynthesis, and bioactivities. Moreover, more than 135 metabolites have been listed, and 71 references have been cited. SuperPred, an artificial intelligence (AI) webserver, was used to predict the potential targets for selected phenalenones. Among these targets, we chose human glucose transporter 1 (hGLUT1) for an extensive in silico study, as it shows high probability and model accuracy. Among them, aspergillussanones C (60) and G (60) possessed the highest negative docking scores of -15.082 and -14.829 kcal/mol, respectively, compared to the native inhibitor of 5RE (score: -11.206 kcal/mol). The MD (molecular dynamics) simulation revealed their stability in complexes with GLUT1 at 100 ns. The virtual screening study results open up a new therapeutic approach by using some phenalenones as hGLUT1 inhibitors, which might be a potential target for cancer therapy.

摘要

苯并呋喃酮是结构独特的芳香聚酮类化合物,在微生物和植物来源中均有报道。它们具有一个羟基过萘并三酮三环系统,并表现出多种生物活性,如细胞毒性、抗菌、抗氧化和抗 HIV 特性,以及酪氨酸酶、α-葡萄糖苷酶、脂肪酶、乙酰胆碱酯酶 (AchE)、吲哚胺 2,3-双加氧酶 1、血管紧张素转化酶和酪氨酸磷酸酶抑制作用。此外,它们具有丰富的亲核核,这激发了许多化学家的灵感和生物学家来合成更多相关的衍生物。本综述提供了真菌来源的报道的苯并呋喃酮概述,包括它们的结构、来源、生物合成和生物活性。此外,列出了超过 135 种代谢产物,并引用了 71 篇参考文献。SuperPred,一种人工智能 (AI) 网络服务器,用于预测选定的苯并呋喃酮的潜在靶标。在这些靶标中,我们选择人类葡萄糖转运蛋白 1 (hGLUT1) 进行广泛的计算研究,因为它显示出高概率和模型准确性。其中,aspergillussanones C (60) 和 G (60) 具有最高的负对接评分-15.082 和-14.829 kcal/mol,与天然抑制剂 5RE (评分:-11.206 kcal/mol) 相比。MD(分子动力学)模拟表明它们在与 GLUT1 复合物中的稳定性为 100 ns。虚拟筛选研究结果为使用一些苯并呋喃酮作为 hGLUT1 抑制剂开辟了一种新的治疗方法,这可能是癌症治疗的一个潜在靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/174e/9608606/dbadb9fe3201/molecules-27-06797-sch001.jpg

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