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Structure Identification and Anti-Cancer Pharmacological Prediction of Triterpenes from Ganoderma lucidum

机译:灵芝三萜类化合物的结构鉴定和抗癌药理预测

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摘要

Ganoderma triterpenes (GTs) are the major secondary metabolites of Ganoderma lucidum , which is a popularly used traditional Chinese medicine for complementary cancer therapy. In the present study, systematic isolation, and in silico pharmacological prediction are implemented to discover potential anti-cancer active GTs from G. lucidum . Nineteen GTs, three steroids, one cerebroside, and one thymidine were isolated from G. lucidum . Six GTs were first isolated from the fruiting bodies of G. lucidum , including 3β,7β,15β-trihydroxy-11,23-dioxo-lanost-8,16-dien-26-oic acid methyl ester ( 1 ), 3β,7β,15β-trihydroxy-11,23-dioxo-lanost-8,16-dien-26-oic acid ( 2 ), 3β,7β,15α,28-tetrahydroxy-11,23-dioxo-lanost-8,16-dien-26-oic acid ( 3 ), ganotropic acid ( 4 ), 26-nor-11,23-dioxo-5α-lanost-8-en-3β,7β,15α,25-tetrol ( 5 ) and (3β,7α)-dihydroxy-lanosta-8,24-dien- 11-one ( 6 ). (4 E ,8 E )- N - d -2′-hydroxypalmitoyl-l- O -β- d -glucopyranosyl-9-methyl-4,8-spingodienine ( 7 ), and stigmasta-7,22-dien-3β,5α,6α-triol ( 8 ) were first reported from the genus Ganodema . By using reverse pharmacophoric profiling of the six GTs, thirty potential anti-cancer therapeutic targets were identified and utilized to construct their ingredient-target interaction network. Then nineteen high frequency targets of GTs were selected from thirty potential targets to construct a protein interaction network (PIN). In order to cluster the pharmacological activity of GTs, twelve function modules were identified by molecular complex detection (MCODE) and gene ontology (GO) enrichment analysis. The results indicated that anti-cancer effect of GTs might be related to histone acetylation and interphase of mitotic cell cycle by regulating general control non-derepressible 5 (GCN5) and cyclin-dependent kinase-2 (CDK2), respectively. This research mode of extraction, isolation, pharmacological prediction, and PIN analysis might be beneficial to rapidly predict and discover pharmacological activities of novel compounds.
机译:灵芝三萜(GTs)是灵芝的主要次生代谢产物,灵芝是一种广泛用于辅助癌症治疗的传统中药。在本研究中,系统的分离和计算机药理学预测可用于从灵芝中发现潜在的抗癌活性GT。从灵芝中分离出十九种GT,三种类固醇,一种脑苷和一种胸苷。首先从灵芝的子实体中分离出六个GT,包括3β,7β,15β-三羟基-11,23-二氧代-lanost-8,16-dien-26-油酸甲酯(1),3β,7β ,15β-三羟基-11,23-二氧-lanost-8,16-dien-26-oic酸(2),3β,7β,15α,28-四羟基-11,23-二氧-lanost-8,16-dien -26-oic酸(3),灵芝酸(4),26-nor-11,23-dioxo-5α-lanost-8-en-3β,7β,15α,25-tetrol(5)和(3β,7α )-二羟基羊毛脂-8,24-dien-11-1(6)。 (4 E,8 E)-N-d -2'-羟基棕榈酰基-l-O-β-d-吡喃吡喃糖基-9-甲基-4,8-​​亚戊二烯酸(7)和柱头7,22-dien-3β ,5α,6α-三醇(8)最早是从Ganodema属报道的。通过对六个GT进行反向药效学分析,鉴定了三十种潜在的抗癌治疗靶标,并用于构建其成分-靶标相互作用网络。然后从30个潜在靶标中选择19个GT的高频靶标,以构建蛋白质相互作用网络(PIN)。为了聚类GT的药理活性,通过分子复合物检测(MCODE)和基因本体论(GO)富集分析鉴定了十二个功能模块。结果表明,GTs的抗癌作用可能与组蛋白乙酰化和有丝分裂细胞周期的间期有关,分别通过调节一般控制的不可抑制5(GCN5)和细胞周期蛋白依赖性激酶2(CDK2)来实现。这种提取,分离,药理预测和PIN分析的研究模式可能有助于快速预测和发现新化合物的药理活性。

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