Phytoconstituents from Markhamia tomentosa Bind To HPV Oncoprotein with Apoptogenic Potential: A Molecular Modeling Approach

Author:

Ibrahim Mutiat B.1,Kola-Mustapha Adeola T.2,Adelakun Niyi S.3,Koorbanally Neil A.4

Affiliation:

1. Department of Pharmacognosy, Faculty of Pharmacy , University of Lagos, College of Medicine Campus , Idi-Araba, Lagos , Nigeria

2. Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmaceutical Sciences , University of Ilorin , Nigeria

3. Chemogenomics Unit, Department of Biochemistry , Adekunle Ajasin University , Akungba-Akoko , Nigeria

4. School of Chemistry and Physics , University of KwaZulu-Natal , Durban 4000 , South Africa .

Abstract

Abstract Markhamia tomentosa crude extract and fractions exhibited potent growth inhibitory effects capable to induce apoptosis in cervical (HeLa) cancer cell line via in vitro model. Presently, interaction of M. tomentosa phytoconstituents with molecular drug targets to exert its anticancer property is evaluated via in silico study. Identified phytoconstituents from M. tomentosa were retrieved from PubChem database and docked in active sites of HPV 16 E6, caspase -3 and caspase -8 targets using AutoDockVina from PyRx software. Screening for druglikeness; and absorption, distribution, metabolism, excretion, and toxicity (ADMET) predictions was carried out with the use of SwissADME and pkCSM web servers. Standard melphalan and co-crystallized ligands of caspases -3 and -8 enzymes were used to validate protein-ligand interactions. Molecular dynamic simulation was used to validate the stability of the hit molecules complexed with caspases -3 and -8. All identified phytoconstituents from M. tomentosa showed binding affinity for HPV with docking scores range of - 5.4 to -2.6 kcal/mol. Ajugol, carnosol, luteolin and phytol showed good docking energy range of -6.8 to -3.6 kcal/mol; and -4.8 to -1.9 kcal/mol for the active sites of caspases -3 and -8 targets respectively. Based on docking scores; drug-likeliness; and ADMET predictions; luteolin and carnosol were selected as hit compounds. These molecules were found to be stable within the binding site of caspase -3 target throughout the 40ns simulation time. These findings identified hit ligands from M. tomentosa phytoconstituents that inhibit HPV 16 E6 oncogene expression with stimulation of caspases -3 and -8 targets.

Publisher

Walter de Gruyter GmbH

Reference89 articles.

1. Abouelela, M.E., Assaf, H.K., Abdelhamid, R.A., Elkhyat, E.S., Sayed, A.M., Oszako, T., Belbahri, L., El Zowalaty, A.E., Abdelkader, M.S., 2021, Identification of potential SARS-CoV-2 main protease and spike protein inhibitors from the genus Aloe: An in-silico study for drug development. Molecules 26: 1767. https://doi.org/10.3390/molecules26061767.10.3390/molecules26061767

2. Adelakun, N., Obaseki, I., Adeniyi, A., Fapohunda, O., Obaseki, E., Omotuyi, O., 2020, Discovery of new promising USP14 inhibitors: computational evaluation of the thumb-palm pocket. Journal of Biomolecular Structure and Dynamics 10: 1 - 11. doi: 10.1080/07391102.2020.1844803.10.1080/07391102.2020.1844803

3. Adewole, K.E., Ishola, A.A., 2019, Phytosterols and triterpenes from MorindalucidaBenth (Rubiaceae) as potential inhibitors of antiapoptotic BCL-XL, BCL-2, and MCL-1: an in-silico study. Journal of Receptor and Signal Transduction 39(1): 87 - 97. doi.org/10.1080/10799893.20 19.1625062.10.1080/10799893.2019.1625062

4. Ahmad, S.S., Sinha, M., Ahmad, K., Khaid, M., Choi, I., 2020, Study of caspase 8 inhibition for the management of Alzheimer’s disease: A molecular docking and dynamics simulation. Molecules 25: 2071. doi:10.3390/molecules25092071.10.3390/molecules25092071

5. Aladesanmi, A.J., Iwalewa, E.O., Adebajo, A.C., Akinkunmi, E.O., Taiwo, B.J., Olorunmola, F.O., Lamikanra, A., 2007, Antimicrobial and antioxidant activities of some Nigerian medicinal plants. African Journal of Traditional and Complementary Alternative Medicine 4: 173 - 184. doi: 10.4314/ajtcam.v4i2.31206.10.4314/ajtcam.v4i2.31206

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