| Literature DB >> 31912427 |
Benildo Sousa Cavada1, Vinicius Jose Silva Osterne2, Vanir Reis Pinto-Junior3, Luiz Augusto Gomez Souza4, Claudia Figueiredo Lossio2, Mayara Torquato Lima Silva5, Corneville Correia-Neto2, Messias Vital Oliveira2, Jorge Luis Almeida Correia2, Antonio Hadson Bastos Neco2, Jorge Luiz Coelho Domingos3, Wandemberg Paiva Ferreira3, Gil Aquino Farias3, Kyria Santiago Nascimento6.
Abstract
The Tn antigen is an epitope containing N-acetyl-D-galactosamine present in the extracellular matrix of some carcinoma cells in humans, and it is often used as a biomarker. Lectins are proteins capable of binding to carbohydrates and can be used as a molecular tool to recognize antigens and to differentiate cancer cells from normal cells. In this context, the present work aimed to characterize the interaction of Vatairea guianensis seed lectin with N-acetyl-D-galactosamine and the Tn antigen by molecular dynamics and molecular mechanics/Poisson-Boltzmann solvent-accessible surface area analysis. This study revealed new interacting residues not previously identified in static analysis of the three-dimensional structures of Vatairea lectins, as well as the configuration taken by the carbohydrate recognition domain, as it interacts with each ligand. During the molecular dynamics simulations, Vatairea guianensis lectin was able to bind stably to Tn antigen, which, as seen previously for other lectins, enables its use in cancer research, diagnosis, and therapy. This work further demonstrates the efficiency of bioinformatics in lectinology.Entities:
Keywords: Cancer; Lectin; Molecular dynamics; Tn antigen; Vatairea guianensis
Year: 2020 PMID: 31912427 DOI: 10.1007/s00894-019-4281-3
Source DB: PubMed Journal: J Mol Model ISSN: 0948-5023 Impact factor: 1.810