Marmesin and Marmelosin Interact with the Heparan Sulfatase-2 Active Site: Potential Mechanism for Phytochemicals from Bael Fruit Extract as Antitumor Therapeutics

Author:

Hemakumar C.1ORCID,Ravindranath B. S.2ORCID,Ravishankar G. A.1ORCID,Ramirez D. C.3ORCID,Kiran S. V.1ORCID

Affiliation:

1. Department of Biotechnology, Dayananda Sagar College of Engineering, Shavige Malleshwara Hills, Kumaraswamy Layout, Bangalore 560111, Karnataka, India

2. Department of Biotechnology, Manipal Institute of Technology, Manipal Academy of Higher Education, Eshwar Nagar, Manipal, 576104 Karnataka, India

3. Laboratory of Experimental and Translational Medicine, IMIBIO-SL, CCT-San Luis (CONICET), National University of San Luis, 5700 San Luis, San Luis, Argentina

Abstract

Human heparan sulfatase-2 (HSULF-2) is an oncoprotein overexpressed in the surface of all types of tumor cells and its activity plays a critical role in cancer survival and progression. Our previous studies have shown that bael fruit extract, containing marmesin and marmelosin, inhibits the HSULF-2 activity and kills breast tumor cells, but the mechanism of these processes remains fairly known mainly because the HSULF-2’s 3D structure is partially known. Herein, we aimed at providing an in silico molecular mechanism of the inhibition of human HSULF-2 by phytochemicals from bael fruit extract. Pharmacokinetic parameters of the main phytochemicals contained in the bael fruit extract, sequence-based 3D structure of human HSULF-2, and the interaction of bael fruit’s phytochemicals with the enzyme active site was modeled, evaluated, and verified. Docking studies revealed marmesin and marmelosin as potential inhibitors with binding score -8.5 and -7.7 Kcal/mol; these results were validated using molecular dynamics simulations, which exhibited higher stability of the protein-ligand complexes. Taking together, with our earlier in vitro data, our computational analyses suggest that marmesin and marmelosin interact at the active site of HSULF-2 providing a potential mechanism for its inhibition and consequent antitumor activity by phytochemicals contained in the bael fruit extract.

Funder

Fondo Nacional para la Ciencia y la Tecnología (FONCyT), Argentina

Publisher

Hindawi Limited

Subject

Cell Biology,Aging,General Medicine,Biochemistry

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