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莪术内生真菌中2,3-戊二醇的分离、结构鉴定、抗衰老作用及对接研究

Isolation, structure determination, and antiaging effects of 2,3-pentanediol from endophytic fungus of Curcuma amada and docking studies.

作者信息

Tiwari Sudeep, Singh Sailendra, Pandey Pallavi, Saikia Shilpi K, Negi Arvind Singh, Gupta Shailendra K, Pandey Rakesh, Banerjee Suchitra

机构信息

Microbial Technology and Nematology Division, Central Institute of Medicinal and Aromatic Plants (CSIR-CIMAP), Lucknow, Uttar Pradesh, 226015, India.

出版信息

Protoplasma. 2014 Sep;251(5):1089-98. doi: 10.1007/s00709-014-0617-0. Epub 2014 Feb 11.

DOI:10.1007/s00709-014-0617-0
PMID:24515569
Abstract

An endophytic fungus was isolated from the rhizomes of Curcuma amada (Zingiberaceae), which was identified as Fusarium oxysporum on the basis of its morphological and molecular characters. Chromatographic separation and spectroscopic analysis of the fungal metabolite (chloroform extract) led to the identification of one pure compound having molecular formula C5H12O2, i.e., 2,3-pentanediol (1). Activity analysis of compound 1 demonstrated improved antiaging (antioxidant, thermotolerance) properties against Caenorhabditis elegans, in comparison to a similar, commercially available molecule i.e., 1,5-pentanediol (2). The effective (lower) concentration of 1 significantly showed (28.6%) higher survival percentage of the worms under thermal stress (37 ºC) compared to its higher concentration (25.3%), while similar trends were followed in oxidative stress where (22.2%) higher survival percentage was recorded in comparison to untreated control. The compound 1, however, lacked potential antimicrobial activity, indicating the plausible ramification of the position of OH group in such bioactive molecules. In silico evaluation of these molecules against common as well as unique targets corroborated better antiaging potential of 1 in comparison to that of 2. The results for the first time indicated that the utilization of the endophytic fungi of C. amada could, thus, be a possible source for obtaining non-plant-based bioactive compounds having broader therapeutic applications pertaining to age-related progressions.

摘要

从莪术(姜科)的根茎中分离出一种内生真菌,根据其形态和分子特征鉴定为尖孢镰刀菌。对该真菌代谢产物(氯仿提取物)进行色谱分离和光谱分析,鉴定出一种分子式为C5H12O2的纯化合物,即2,3-戊二醇(1)。与类似的市售分子1,5-戊二醇(2)相比,化合物1的活性分析表明其对秀丽隐杆线虫具有更好的抗衰老(抗氧化、耐热性)特性。在热应激(37℃)下,1的有效(较低)浓度显著显示出线虫的存活率比其较高浓度时高(28.6%),而在氧化应激中也呈现类似趋势,与未处理对照相比,存活率高(22.2%)。然而,化合物1缺乏潜在的抗菌活性,这表明此类生物活性分子中OH基团位置可能存在分支。与2相比,这些分子针对常见和独特靶点的计算机模拟评估证实了1具有更好的抗衰老潜力。结果首次表明,利用莪术的内生真菌可能是获得具有更广泛与年龄相关进展治疗应用的非植物源生物活性化合物的一个可能来源。

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