Elucidating the molecular mechanisms underlying anti-inflammatory effects of Morchella esculenta in the arachidonic acid metabolic pathway by network pharmacology and molecular docking

被引:5
|
作者
Ma, Xiaoying [1 ]
Huo, Zhiming [2 ]
Yang, Tao [1 ]
Xiao, Jun [1 ]
Zhao, Ying [1 ]
Gong, Na [1 ]
Chen, Xun [1 ]
Liu, Guoli [1 ]
Wang, Hong [1 ]
机构
[1] Liaoning Acad Agr Sci, Inst Edible Fungi, Shenyang 110161, Peoples R China
[2] Guidaojiaotong Polytech Inst, Informat Ctr, Shenyang 110161, Peoples R China
关键词
OIL; CANCER; CELLS;
D O I
10.1038/s41598-023-42658-1
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Morchella esculenta is an edible fungus with a uniquely delicious flavor and remarkable benefits for health. Herein, the molecular mechanism underlying the anti-inflammatory effects of Morchella esculenta was elucidated using molecular docking and network pharmacology. NPASS, Super-pred, SEA, Swiss Target Prediction, GeneCards, DisGeNET, Omim database, and STRING platform were used to select anti-inflammatory targets and construct target protein interaction networks using the active ingredients of Morchella esculenta. The OmicShare cloud platform was used to analyze GO functions and KEGG pathways related to the target, and the AutoDock Vina software was used to perform molecular docking and molecular dynamics (MD) simulation on the main target. Based on Cytoscape's "Network Analysis", the degree was used to identify potential key targets, and different inflammatory transcriptome data sets were used to evaluate core targets showing clinical significance. The active ingredient of Morchella esculenta identified from the NPASS database was EOYA, which had 43 anti-inflammatory targets, including NR1I2, PTGS1, PTGS2, CYP4F2, CYP3A4, TLR4, MAPK1, PLA2G4A, and PTPN11, and was mainly implicated in arachidonic acid metabolism, vascular endothelial growth factor signal pathway, and sphingomyelin signal transduction pathway, indicating that the anti-inflammatory effects of EOYA were mainly related to these biological processes. The degree was used to select 9 potential effective targets, namely NR1I2, PTGS1, PTGS2, CYP4F2, CYP3A4, TLR4, MAPK1, PLA2G4A, and PTPN11, among which NR1I2, PTGS1, PTGS2, PLA2G4A, MAPK1, CYP3A4, and TLR4 showed clinical significance. Molecular docking results showed that (E)-Octadec-11-En-9-Ynoic Acid (EOYA) could spontaneously bind to the 9 core targets, and the binding fractions of NR1I2, PTGS1, PTGS2, CYP4F2, and CYP3A4 were the highest. The MD simulation results showed that EYOA did indeed bind well NR1I2 to PTGS2, and the complex has high stability. Morchella esculenta can regulate the activity of prostaglandin endoperoxide synthetase, and affect the biosynthesis of prostaglandins, thereby impacting the metabolic pathway of arachidonic acid.
引用
收藏
页数:23
相关论文
共 50 条
  • [1] Elucidating the molecular mechanisms underlying anti-inflammatory effects of Morchella esculenta in the arachidonic acid metabolic pathway by network pharmacology and molecular docking
    Ma Xiaoying
    Huo Zhiming
    Yang Tao
    Xiao Jun
    Zhao Ying
    Gong Na
    Chen Xun
    Liu Guoli
    Wang Hong
    Scientific Reports, 13
  • [2] The Anti-inflammatory Mechanism of Tauroursodeoxycholic Acid based on Network Pharmacology and Molecular Docking
    Tan, Xiaoqing
    Chen, Shuangkou
    Tang, Si
    Xu, Mingxin
    Ren, Fengming
    Xu, Xi
    LETTERS IN DRUG DESIGN & DISCOVERY, 2023, 20 (09) : 1360 - 1371
  • [3] Using network pharmacology and molecular docking to explore the underlying anti-inflammatory mechanism of Wuyao-Danshen to treat endometriosis
    Zhu, Jie
    Xue, Xiaoou
    He, Zhiping
    Zhang, Jiawei
    Sun, Haiyun
    ANNALS OF TRANSLATIONAL MEDICINE, 2022, 10 (04)
  • [4] Application of Network Pharmacology, Molecular Docking, and In Vitro Experimental Evaluation to Decipher the Anti-Inflammatory Mechanisms of Cirsium japonicum
    Wang, Jiaxue
    Tao, Hui
    Wang, Zhenlong
    An, Wei
    Zhao, Ya
    Han, Bing
    Wang, Jinquan
    Sun, Xiuzhu
    Wang, Xiumin
    APPLIED SCIENCES-BASEL, 2024, 14 (21):
  • [5] Integrated network pharmacology and molecular docking analyses of the mechanisms underlying the antihypertensive effects of lotusine
    Zhan, Qiuxiao
    Zhao, Junnan
    Liu, Lu
    Wang, Biqing
    Hui, Jiaqi
    Lin, Quan
    Qin, Yuxuan
    Xue, Bing
    Xu, Fengqin
    EUROPEAN JOURNAL OF PHARMACOLOGY, 2023, 945
  • [6] The molecular mechanisms underlying anti-inflammatory effects of galangin in different diseases
    Hassanein, Emad H. M.
    Abd El-Maksoud, Mostafa S.
    Ibrahim, Islam M.
    Abd-alhameed, Esraa K.
    Althagafy, Hanan S.
    Mohamed, Nesma M.
    Ross, Samir A.
    PHYTOTHERAPY RESEARCH, 2023, 37 (07) : 3161 - 3181
  • [7] Anti-inflammatory Effects and Underlying Molecular Mechanisms of Traditional Chinese Medicine
    Li Lin
    Xu Shu-Jue
    PROGRESS IN BIOCHEMISTRY AND BIOPHYSICS, 2020, 47 (08) : 655 - 658
  • [8] Study on Anti-inflammatory Mechanism of Blueberry based on Network Pharmacology and Molecular Docking Technology
    He, Bai
    Chen, Shuangkou
    Xu, Mingxin
    Tan, Xiaoqing
    Guo, Yinying
    Jie, Hang
    Huang, Jiansheng
    COMBINATORIAL CHEMISTRY & HIGH THROUGHPUT SCREENING, 2023, 26 (02) : 362 - 372
  • [9] Study on Anti-Inflammatory Mechanism of Angelica pubescens Based on Network Pharmacology and Molecular Docking
    Ren, Jianwei
    Ren, Minghui
    Mo, Zhiting
    Lei, Ming
    NATURAL PRODUCT COMMUNICATIONS, 2023, 18 (01)