Journal of Oleo Science
Online ISSN : 1347-3352
Print ISSN : 1345-8957
ISSN-L : 1345-8957

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Litsea cubeba Essential Oil: Component Analysis, Anti-Candida albicans Activity and Mechanism Based on Molecular Docking
Hong LiYiwen KongWei HuSheng ZhangWei WangMin YangYicheng Luo
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ジャーナル オープンアクセス 早期公開

論文ID: ess22108

この記事には本公開記事があります。
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The antifungal mechanism of plant essential oil has always been a concern in the agriculture and forestry science field. In this investigation, besides the evaluation of inhibitory activities of twenty-three essential oils against Candida albicans in vitro, identification and quantification of the chemical composition of Litsea cubeba essential oil by gas chromatography-mass spectrometry were investigated. Further development, we assessed the mechanism of L. cubeba essential oil against C. albicanas by molecular docking. Litsea cubeba essential oil displayed the strongest inhibitory activity among these oils and the diameter of the circle against C. albicanas was more than 50 mm. Maximum three components were identified with trans-citral (33.6%), cis-citral (30.3%), d-limonene (8.2%). Secretory aspartate protease (SAP5) and β-1,3-glucan synthase (β-1,3-GS) are two key enzyme proteins that inhibit the growth of C. albicanas. Molecular docking studies reveal chemical binding forces of cis-citral, trans-citral and d-limonene to SAP5 are –21.76 kJ/mol, –22.18 kJ/mol and –24.27 kJ/mol, to β-1,3-GS are –23.01 kJ/mol, –25.52 kJ/mol and –23.85 kJ/mol, respectively. The most preferable binding mechanism was observed against SAP5 and β-1,3-GS due to hydrophobic interaction, as well as hydrogen bonding between citral molecules. The research results suggest the mechanism of chemical components in L. cubeba essential oil inhibits the growth of C. albicanas, which provides a reference to the development and utilization of essential oil.

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© 2022 by Japan Oil Chemists' Society

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