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菖蒲内生真菌埃氏炭角菌的非靶向代谢组学及生物活性评估

Untargeted Metabolomics and Bioactivities Assessment of Xylaria ellisii, an Endophytic Fungus Isolated from the Leaf of the Plant Acorus calamus Linn.

作者信息

Prajapati Chandrabhan, Rai Sachchida Nand, Singh Anurag Kumar, Rajak Naina, Garg Neha, Singh Santosh Kumar

机构信息

Centre of Experimental Medicine and Surgery, Institute of Medical Sciences, Banaras Hindu University, Varanasi 221005, India.

Department of Pharmaceutical Engineering & Technology, Indian Institute of Technology (BHU) Varanasi 221005, India.

出版信息

Curr Pharm Des. 2025 Jan 24. doi: 10.2174/0113816128337697250106001808.

Abstract

INTRODUCTION

Fungal endophytes have mutualistic associations with the plant's host, communicating through genetic and metabolic processes. As a result, they gain the ability to generate therapeutically effective metabolites and their derivatives.

METHODS

The current study aims to assess antioxidant potential along with the identification of robust metabolites within the crude extract of a potent endophytic fungus Xylaria ellisii isolated from leaf tissues of the Acorus calamus Linn plant.Four endophytic fungi were obtained from leaf tissues of Acorus calamus Linn., and identified morphologically and molecularly as distinct species. Each ethyl acetate extract of the isolated fungi exhibited a unique chemical profile in the HPTLC fingerprint at various wavelengths. The ethyl acetate (EA) extract from the fungal strain ACL-4 (Xylaria ellisii) demonstrated the strongest antioxidant activity among the four fungal endophytes examined, with an EC50 value of 292.64 ± 3.558 μg/mL. Remarkably, fungal endophyte ACL-4 extract exhibited superior antimicrobial activity at the less concentrations compared to ACL-ME extract of leaf crude.

RESULTS

The extract of ACL-ME-treated HEK 293T cells exhibited significant toxicity, with an IC50 value of 1481.74 ± 23.772 μg/mL, compared to fungal strain ACL-4-treated HEK 293T cells, which had an IC50 value greater than 2000 μg/mL. Consequently, the crude extract of ACL-4 and ACL-ME along with the standard drug methotrexate exhibited cytotoxic activity against cancer cell line MDA-MB-231 with IC50 concentrations of 146.65 ± 0.394 μg/mL, 528.46 ± 10.912 μg/mL, and 134.11 ± 3.446 μg/mL, respectively. A total of 2,255 compounds were detected through LC-HRMS-based metabolomics in the crude metabolites of Xylaria ellisii, with certain compounds identified in multiple instances. Among this repertoire, 62 robust bioactive compounds were identified through meticulous screening, guided by existing literature. Comparative HPTLC fingerprint analysis, along with antioxidant efficacy assays of ethyl acetate extracts of Xylaria ellisii derived from Acorus calamus leaves and Cassia fistula twigs revealed the host-specific production of bioactive chemicals.

CONCLUSION

The top-scoring Keap1 inhibitors derived from Xylaria ellisii, including Pregabalin (-6.083 Kcal/mol), Ferulic acid (-5.434 Kcal/mol), (R)-Piperidine-2-carboxylic acid (-5.31 Kcal/mol), Genipin (-5.197 Kcal/mol), and Brivaracetam (-5.17 Kcal/mol), respectively were considered as Keap 1 inhibitors, potentially mitigate oxidative stress.

摘要

引言

真菌内生菌与植物宿主存在共生关系,通过基因和代谢过程进行交流。因此,它们获得了产生具有治疗效果的代谢产物及其衍生物的能力。

方法

本研究旨在评估从菖蒲叶组织中分离出的强效内生真菌埃氏炭角菌粗提物中的抗氧化潜力,并鉴定其中的活性代谢产物。从菖蒲叶组织中获得了四种内生真菌,通过形态学和分子学鉴定为不同的物种。分离出的真菌的每种乙酸乙酯提取物在不同波长的高效薄层色谱指纹图谱中都呈现出独特的化学特征。在检测的四种真菌内生菌中,真菌菌株ACL-4(埃氏炭角菌)的乙酸乙酯提取物表现出最强的抗氧化活性,EC50值为292.64±3.558μg/mL。值得注意的是,与叶粗提物的ACL-ME提取物相比,真菌内生菌ACL-4提取物在较低浓度下表现出更强的抗菌活性。

结果

与经真菌菌株ACL-4处理的HEK 293T细胞相比,经ACL-ME处理的HEK 293T细胞提取物表现出显著毒性,IC50值为1481.74±23.772μg/mL,而经真菌菌株ACL-4处理的HEK 293T细胞的IC50值大于2000μg/mL。因此,ACL-4和ACL-ME的粗提物以及标准药物甲氨蝶呤对癌细胞系MDA-MB-231表现出细胞毒性活性,IC50浓度分别为146.65±0.394μg/mL、528.46±10.912μg/mL和134.11±3.446μg/mL。通过基于液相色谱-高分辨质谱的代谢组学方法,在埃氏炭角菌的粗代谢产物中总共检测到2255种化合物,其中某些化合物被多次鉴定。在现有文献的指导下,通过细致筛选,从这些化合物中鉴定出62种活性生物化合物。对源自菖蒲叶和黄金槐嫩枝的埃氏炭角菌乙酸乙酯提取物进行的比较高效薄层色谱指纹图谱分析以及抗氧化功效测定,揭示了生物活性化学物质的宿主特异性产生。

结论

源自埃氏炭角菌的得分最高的Keap1抑制剂,包括普瑞巴林(-6.083千卡/摩尔)、阿魏酸(-5.434千卡/摩尔)、(R)-哌啶-2-羧酸(-5.31千卡/摩尔)、京尼平(-5.197千卡/摩尔)和布瓦西坦(-5.17千卡/摩尔),分别被视为Keap 1抑制剂,可能减轻氧化应激。

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