Rosemary as a Potential Source of Natural Antioxidants and Anticancer Agents: A Molecular Docking Study

Author:

Bouammali Haytham1ORCID,Zraibi Linda2,Ziani Imane1ORCID,Merzouki Mohammed1ORCID,Bourassi Lamiae1,Fraj Elmehdi1ORCID,Challioui Allal1,Azzaoui Khalil34ORCID,Sabbahi Rachid45,Hammouti Belkheir46ORCID,Jodeh Shehdeh7,Hassiba Maryam8,Touzani Rachid1ORCID

Affiliation:

1. Laboratory of Applied Chemistry Environment (LCAE), Faculty of Science Oujda, University Mohammed First, Oujda 60000, Morocco

2. Water, Environment and Sustainable Development Laboratory (LEEDD), Faculty of Science Oujda, University Mohammed First, Oujda 60000, Morocco

3. Laboratory of Engineering, Electrochemistry Modeling and Environment, Faculty of Sciences, Sidi Mohamed Ben Abdellah University, Fez 30000, Morocco

4. Euro-Mediterranean University of Fes (UEMF), Fez 30070, Morocco

5. Higher School of Technology, Ibn Zohr University, Quartier 25 Mars, P.O. Box 3007, Laayoune 70000, Morocco

6. Laboratory of Industrial Engineering, Energy and the Environment (LI3E), SupMTI, Rabat 10000, Morocco

7. Department of Chemistry, An-Najah National University, Nablus P.O. Box 7, Palestine

8. College of Medicine, QU Health, Qatar University, Doha 2713, Qatar

Abstract

Rosmarinus officinalis L. compounds, especially its main polyphenolic compounds, carnosic acid (CA) and rosmarinic acid (RA), influence various facets of cancer biology, making them valuable assets in the ongoing fight against cancer. These two secondary metabolites exhibit formidable antioxidant properties that are a pivotal contributor against the development of cancer. Their antitumor effect has been related to diverse mechanisms. In the case of CA, it has the capacity to induce cell death of cancer cells through the rise in ROS levels within the cells, the inhibition of protein kinase AKT, the activation of autophagy-related genes (ATG) and the disrupt mitochondrial membrane potential. Regarding RA, its antitumor actions encompass apoptosis induction through caspase activation, the inhibition of cell proliferation by interrupting cell cycle progression and epigenetic regulation, antioxidative stress-induced DNA damage, and interference with angiogenesis to curtail tumor growth. To understand the molecular interaction between rosemary compounds (CA and RA) and a protein that is involved in cancer and inflammation, S100A8, we have performed a series of molecular docking analyses using the available three-dimensional structures (PDBID: 1IRJ, 1MR8, and 4GGF). The ligands showed different binding intensities in the active sites with the protein target molecules, except for CA with the 1MR8 protein.

Publisher

MDPI AG

Subject

Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics

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