[利用代谢组学探索表观遗传修饰策略对Acanthus ilicifolius L.内生真菌代谢物对卵巢癌的影响]。

Xiao-Lin Ma, Lai-Yan Cai, Yan-Ying Liu, Shang-Ping Xing, Liang Kang, Xia Wei, Dan Zhu
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This approach facilitates the expression of silenced genes in endophytic fungi, thereby increasing the number and diversity of secondary metabolites. Furthermore, it assists in overcoming the inhibition of microbial secondary-metabolite synthesis under laboratory conditions, and enhances silenced-gene expressions. The advent of novel analytical techniques and bioinformatics has provided a comprehensive, multifaceted, and holistic understanding of fungal metabolism through the development of metabolomics as a research platform. However, few studies have combined anti-ovarian cancer-activity screening with metabolomic approaches in the search for activity-differentiating metabolites from endophytic fungi under the intervention of epigenetic modifiers. Herein, we investigated the impact of epigenetic modifiers on the secondary metabolites of the endophytic <i>Diaporthe goulteri</i> fungus from <i>Acanthus ilicifolius</i> L. to determine their potential anti-ovarian cancer activities. Crude extracts were obtained by controlling three variables: the number of fermentation days, the type of epigenetic modifier, and its concentration, with activities screened using the CCK-8 (cell counting kit-8) method. Ultra performance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS) was subsequently employed for non-targeted metabolomic analysis. A multivariate statistical analysis model was constructed using principal component analysis and orthogonal partial least squares-discriminant analysis, which combines model and variable importance projection, with qualitative screening performed and significant changes (variable importance in the projection (VIP)≥1; <i>P</i><0. 05) determined. 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引用次数: 0

摘要

卵巢癌严重威胁着妇女的健康和安全。迄今为止,人们已经发现了 130 多种天然抗肿瘤小分子化合物,其中约 50%来源于微生物。刺桐(Acanthus ilicifolius L.)物种主要分布在中国广东、海南和广西地区,生长在潮汐可及的沿海地区。最近的研究表明,Acanthus ilicifolius L. 提取物具有一系列药理特性,包括抗炎、保肝、抗氧化和抗肿瘤活性。内生真菌通常存在于药用植物的健康组织和器官中。这些真菌和它们栖息的植物形成互利共生关系。内生真菌产生一系列次级代谢产物,其中的活性物质在药物研发和植物病害生物防治方面具有巨大的经济价值和应用前景。内生真菌次生代谢产物的产生受特定基因簇的调控,目前已有多种技术用于刺激真菌的次生代谢过程,包括表观遗传修饰和 OSMAC(一株多化合物)策略、共培养和基因修饰。其中,表观遗传修饰已被证明有效;这种策略是在培养基中加入小分子表观遗传修饰剂,从而激活沉默的生物合成基因簇,而不改变真菌的 DNA 序列。这种方法有利于沉默基因在内生真菌中的表达,从而增加次生代谢物的数量和多样性。此外,它还有助于克服实验室条件下对微生物次生代谢物合成的抑制,并增强沉默基因的表达。新型分析技术和生物信息学的出现,通过发展代谢组学这一研究平台,使人们对真菌代谢有了全面、多元和整体的了解。然而,很少有研究将抗卵巢癌活性筛选与代谢组学方法相结合,在表观遗传修饰剂的干预下从内生真菌中寻找活性差异代谢物。在此,我们研究了表观遗传修饰剂对Acanthus ilicifolius L.内生真菌Diaporthe goulteri次生代谢物的影响,以确定其潜在的抗卵巢癌活性。通过控制三个变量:发酵天数、表观遗传修饰剂的类型及其浓度,获得了粗提取物,并使用 CCK-8(细胞计数试剂盒-8)方法筛选其活性。随后采用超高效液相色谱-串联质谱法(UPLC-MS/MS)进行非靶向代谢组学分析。利用主成分分析法和正交偏最小二乘判别分析法构建了多变量统计分析模型,将模型和变量重要性投影结合起来,进行定性筛选,并对显著变化(投影中变量重要性(VIP)≥1;在此基础上,还对(3aR,6S,6aS)-6-(4-羟基-2-甲氧基-2-丁酰)-4,4-二甲基六氢-1(2H)-戊烯酮和 8-氨基喹啉进行了定性筛选。普萘洛尔、1-(2-硝基苯氧基)辛烷、3-(1-乙基-1,3,3-三甲基-2,3-二氢-1H-茚-5-基)丁醛、N2-苯甲酰基精氨酸和 8-氨基喹啉的表达下调,而其余 10 种物质的表达上调。多酮类化合物是表达量较高的主要成分。该研究表明,通过将抗卵巢癌活性筛选与代谢组学分析相结合,可以寻找到潜在的活性差异代谢物,从而为进一步开发刺五加资源及后续有针对性地分离活性化合物提供参考。
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[Using metabolomics to explore the effects of epigenetic-modification strategies on the metabolites of Acanthus ilicifolius L. endophytic fungi against ovarian cancer].

Ovarian cancer is a serious threat to women's health and safety. So far, people have discovered more than 130 small molecule compounds of natural origin for anti-tumor, of which approximately 50% are of microbial origin. The Acanthus ilicifolius L. species is primarily distributed in the Guangdong, Hainan, and Guangxi regions of China and grows in tidally accessible coastal areas. Recent studies have revealed that Acanthus ilicifolius L. extracts are endowed with a range of pharmacological properties, including anti-inflammatory, hepatoprotective, antioxidant, and antitumor activities. Endophytic fungi are commonly found in the healthy tissue and organs of medicinal plants. These fungi and the plants they inhabit form mutually beneficial symbiotic relationships. Endophytic fungi produce a series of secondary metabolites, with active substances having shown great economic value and applications prospects in drug research and development as well as for the biological control of plant diseases. Secondary metabolites production by endophytic fungi is regulated by specific gene clusters, and several techniques have been used to stimulate the secondary metabolic processes of fungi, including epigenetic-modification and OSMAC (one strain many compounds) strategies, co-culturing, and gene modification. Among these, epigenetic modification has been shown to be effective; this strategy involves the addition of small-molecule epigenetic modifiers to the culture medium, thereby activating silenced biosynthetic gene clusters without altering the DNA sequences of the fungi. This approach facilitates the expression of silenced genes in endophytic fungi, thereby increasing the number and diversity of secondary metabolites. Furthermore, it assists in overcoming the inhibition of microbial secondary-metabolite synthesis under laboratory conditions, and enhances silenced-gene expressions. The advent of novel analytical techniques and bioinformatics has provided a comprehensive, multifaceted, and holistic understanding of fungal metabolism through the development of metabolomics as a research platform. However, few studies have combined anti-ovarian cancer-activity screening with metabolomic approaches in the search for activity-differentiating metabolites from endophytic fungi under the intervention of epigenetic modifiers. Herein, we investigated the impact of epigenetic modifiers on the secondary metabolites of the endophytic Diaporthe goulteri fungus from Acanthus ilicifolius L. to determine their potential anti-ovarian cancer activities. Crude extracts were obtained by controlling three variables: the number of fermentation days, the type of epigenetic modifier, and its concentration, with activities screened using the CCK-8 (cell counting kit-8) method. Ultra performance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS) was subsequently employed for non-targeted metabolomic analysis. A multivariate statistical analysis model was constructed using principal component analysis and orthogonal partial least squares-discriminant analysis, which combines model and variable importance projection, with qualitative screening performed and significant changes (variable importance in the projection (VIP)≥1; P<0. 05) determined. Fifteen differential metabolites were identified in the fungal and epigenetic modification group, primarily comprising polyketides, amino acids, derivatives, alkaloids, and organic acids, including prenderol, glycine, valine, 2-ethylcaproic acid, rubratoxin B, finasteride, 6-silaspiro[5.5]undecane, 1-(2-nitrophenoxy)octane, heptadecene, 1-pentadecene, 11-ketoetiocholanolone, 3-(1-ethyl-1,3,3-trimethyl-2,3-dihydro-1H-inden-5-yl)butanal, N2-benzoylarginine, tabutrex, (3aR,6S,6aS)-6-(4-hydroxy-2-methoxy-2-butanyl)-4,4-dimethylhexahydro-1(2H)-pentalenone, and 8-aminoquinoline. The expressions of prenderol, 1-(2-nitrophenoxy)octane, 3-(1-ethyl-1,3,3-trimethyl-2,3-dihydro-1H-inden-5-yl)butanal, N2-benzoylarginine, and 8-aminoquinoline were downregulated, whereas the expressions of the remaining 10 substances were upregulated. Polyketides were the main components that exhibited higher expressions. This study showed that latent active differential metabolites can be searched by combining anti-ovarian cancer-activity screening with metabolomics analysis, thereby providing a reference for the further development of Acanthus ilicifolius L. resources and the subsequent targeted isolation of active compounds.

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