ArticleViewAbstractPharmacognosy Journal,2024,16,1,46-51.DOI:10.5530/pj.2024.16.7Published:February 2024Type:Original ArticleUnveiling Potential Therapies: Molecular Docking Analysis of CAMKK2 and Its Mutant Variants with CAMKK2 Inhibitors in Indonesian Patients with HIV-Sensory NeuropathyAhmad Yanuar Safri, Salim Harris, Putera Dewa Haryono, Ariane Benina Budiwan, Eugenia Isadora, Aisyah Fitriannisa Prawiningrum, and Fadilah Fadilah Ahmad Yanuar Safri1,2,3,*, Salim Harris2,3, Putera Dewa Haryono2,3, Ariane Benina Budiwan2,3, Eugenia Isadora2,3, Aisyah Fitriannisa Prawiningrum4, Fadilah Fadilah4 1Doctoral Program in Biomedical Sciences, Faculty of Medicine Universitas INDONESIA. 2Neurology Department, Faculty of Medicine, Universitas Indonesia, Jakarta, INDONESIA. 3Neurology Department, Cipto Mangunkusumo Hospital, Jakarta, INDONESIA. 4Bioinformatics Core Facilities IMERI, Medical Chemistry Department, INDONESIA. 5Faculty of Medicine Universitas Indonesia, Jakarta, INDONESIA. Abstract:HIV sensory neuropathy (HIV-SN) is one among many complications that impair patients’ quality of life. Studies in Asian and African populations found that single nucleotide polymorphisms (SNPs) of calcium/ calmodulin-dependent protein kinase 2 (CAMKK2) influence the risk of HIV-SN. This study attempts to explain the influence of CAMKK2 mutations on HIV SN by studying bioinformatics interactions between CAMKK2, its mutants, and their inhibitors by molecular docking with AutoDock in order to observe their interactions with CAMKK2 inhibitors. Results showed that CAMKK2’s binding energy with its native ligand (ATP) is stronger than the mutant variant of CAMKK2MT85 and CAMKK2MT363. Conversely, interaction between CAMKK2 and its inhibitors (KN-93, STO-609, and trifluoperazine) have the lowest mean binding energy compared to CAMKK2MT85 and CAMKK2MT363. This indicates that the mutant variants have weaker interactions with the native ligand and the inhibitors, therefore disrupting the normal function of CAMKK2, its interactions with the inhibitors, while increasing the likelihood of HIV-SN. Keywords:CAMKK2 inhibitors, HIV-SN, Molecular docking, mutation, SNPView:PDF (771.97 KB) PDF Images 3D Structure of CAMKK2 A. mutation T85S and B. mutation A363S. ‹ Predictive Simulation and Functional Insights of Serotonin Transporter: Ligand Interactions Explored through Database Analysis up Analysis of Hepcidin and Interleukin-6 Levels among Transfusion-Dependent Thalassemia Patients With and Without Alloimmunization/Autoimmunization ›