Makara Journal of Science
Vol. 28, No. 2

Molecular Docking of the Interaction between Citrus amblycarpa Extract Contents and Inflammatory Proteins of Hepatic Steatosis

Rosida, Lena (Unknown)
Pratiwi, Dewi Indah Noviana (Unknown)
Panghiyangani, Roselina (Unknown)
Utami, Juliyatin Putri (Unknown)
Idhafi, Nasrul (Unknown)
Febriansyah, Muhammad (Unknown)
Budiarman, Andi Azizah Maulidia (Unknown)



Article Info

Publish Date
25 Jun 2024

Abstract

Citrus amblycarpa possesses various pharmacological activities, such as antioxidant, anticancer, antitumor, hepatoprotective, anti-inflammatory, antidiabetic, antiviral, antibacterial, and antifungal. The main active compounds in C. amblycarpa (including gamma (γ)-aminobutyric acid [GABA], hesperidin, naringin, neoeriocitrin, poncirin, quercetin, and rutin) show potential to interact with the inflammatory proteins in hepatic steatosis (such as nuclear factor kappa beta [NF-kB], tumor necrosis alpha [TNF-alpha], interleukin-6 [IL-6], c-Jun NH2-terminal kinase [JNK], and adiponectin). Molecular docking simulations were performed using Swiss Dock (http://www.swissdock.ch/), and analysis and visualization were conducted using Discovery Studio 4.1. Rutin, poncirin, hesperidin, and neoeriocitrin exhibit high affinities to NF-κB, TNF-alpha, IL-6, and adiponectin proteins, respectively. Similar to curcumin–adiponectin complex interaction, neoeriocitrin–adiponectin interaction involves GLY 223, PRO41, and VAL93 residues. Thus, the most potent inhibitor of hepatic sterosis marker was neoeriocitrin.

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Journal Info

Abbrev

publication:science

Publisher

Subject

Description

Makara Journal of Science publishes original research or theoretical papers, notes, and minireviews on new knowledge and research or research applications on current issues in basic sciences, namely: Material Sciences (including: physics, biology, and chemistry); Biochemistry, Genetics, and ...