ArticleViewAbstractPharmacognosy Journal,2022,14,5,527-531.DOI:10.5530/pj.2022.14.130Published:October 2022Type:Original ArticlePotential Role of Mitragynine as Lipolysis Stimulator via Adrenergic Signalling: Docking Model StudyKhoirul Rista Abidin, Ronny Lesmana, Mas Rizky Anggun Adipurna Syamsunarno, and Kelana Kusuma Dharma Khoirul Rista Abidin1,2, Ronny Lesmana3,4*, Mas Rizky Anggun Adipurna Syamsunarno4, Kelana Kusuma Dharma5 1Biotechnology Study Program, Universitas Padjadjaran, Sumedang-45363, Jawa Barat, INDONESIA. 2Department of Medical Laboratory Technology, Politeknik ‘Aisyiyah Pontianak Pontianak-78114, Kalimantan Barat, INDONESIA. 3Central Laboratory of Molecular Physiology, Universitas Padjadjaran Sumedang-45363, INDONESIA. 4Department of Basic Medical Science, Universitas Padjadjaran Sumedang-45363, Jawa Barat, INDONESIA. 5Department of Nursing, Politeknik Kesehatan Kementerian Kesehatan Pontianak-78124, Kalimantan Barat, INDONESIA. Abstract:Backgrounds: Mitragynine is the most popular of the more than 50 alkaloids contained in M.Speciosa. In particular, the Mitragynine alkaloid has the potential to increase lipid (fats) metabolism through specific pathways such as adenylyl cyclase signaling via adrenergic receptors. In this case, Asp Amino acid and Ser are the types of residues that can activate adenylyl cyclase to initiate a series of activities in cells. Methods: This study used Mitragynine ligand and adrenergic receptors (α1b, α2a, α2b, α2c dan β1). The receptor candidates were tested using Autodock whose test results were presented in the form of tables and 3-dimensional images using the Biovia Discovery Studio. Results: Hydrogen bonds were formed between Mitragynine and the amino acids Asp and Ser at the β1-adrenergic receptor. The binding amino acids were found in Ser20 and Asp21 with energy bond of -5.26 kcal/mol and IC50: 111.35 ppm. Meanwhile, at the adrenergic receptor α2b there was only Asp residue that formed hydrogen bond with Mitragynine namely Asp218A. The energy bond formed between the two was -5.19 kcal/mol and IC50: 125.04 ppm. Conclusion: Mitragynine has the potential to stimulate lipolysis through the pathways of α2b and β1-adrenergic receptors. Keywords:Adrenergic, Docking, Lipolysis, MitragynineView:PDF (937.06 KB) PDF Images Molecule Structure (a) α1b- adrenergic (PDB ID 7b6w; DOI: http://doi.org/10.2210/pdb7B6W/pdb); (b) α2a- adrenergic (PDB ID 6kux; ‹ Phytochemical Screening, Antioxidant Activity, and Anti- Inflammatory Potential of Rhinachantus nasutus (L.) Kurz Flower Ethanol Extract up Isolation and Characterization of Snakehead Fish Meal Extract with Fresh, Boiled, and Steamed Treatments and Its Potential for Health Drinks and Immunomodulators ›