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Published on: May 17, 2016
In silico studies of the interaction between BRN2 protein and MORE DNA
Ivan Evangelista do Vale Coelho1, Denise Costa Arruda2, Alex Gutterres Taranto3
1Laboratório de Química Farmacêutica, Universidade Federal de São João del-Rei, Campus Centro-Oeste Dona Lindu, Divinópolis, MG, Brazil.
Abstract:
The incidence of skin cancer has increased in recent decades, and melanoma is the most aggressive form with the lowest chance of successful treatment. Currently, drug design projects are in progress, but available treatments against metastatic melanoma have not significantly increased survival, and few patients are cured. Thus, new therapeutic agents should be developed as more effective therapeutic options for melanoma. High levels of the BRN2 transcription factor have been related to melanoma development. However, neither the three-dimensional (3D) structure of BRN2 protein nor its POU domain has been determined experimentally. Construction of the BRN2 3D structure, and the study of its interaction with its DNA target, are important strategies for increasing the structural and functional knowledge of this protein. Thus, the aim of this work was to study the interaction between BRN2 and MORE DNA through in silico methods. The full-length BRN2 3D structure was built using the PHYRE2 and Swiss-Model programs, and molecular dynamics of this protein in complex with MORE DNA was simulated for 20 ns by the NAMD program. The BRN2 model obtained includes helix and loop regions, and the BRN2 POU domain shares structural similarity with other members of the transcription factor family. No significant conformational change of this protein occurred during dynamics simulation. These analyses revealed BRN2 residues important for the specific interaction with nucleotide bases and with more than one DNA nucleotide. This study may contribute to the design of inhibitors against BRN2 or MORE DNA as molecular targets of melanoma skin cancer. Graphical Abstract Model of complete Brn2 protein in complex with MORE DNA after building through comparative modeling and refinement by molecular dynamics simulation.
Insights
Researchers modeled the 3D structure of the BRN2 transcription factor and its interaction with MORE DNA. This study provides insights for developing new melanoma treatments targeting BRN2.
Area of Science:
- Oncology
- Structural Biology
- Bioinformatics
Background:
- Melanoma incidence is rising, with limited treatment success for metastatic cases.
- High BRN2 transcription factor levels are linked to melanoma development.
- Experimental 3D structures of BRN2 and its POU domain are lacking.
Purpose of the Study:
- To computationally determine the 3D structure of the BRN2 protein.
- To investigate the interaction between BRN2 and its DNA target, MORE DNA.
- To provide a basis for designing novel melanoma therapeutics.
Main Methods:
- Comparative modeling using PHYRE2 and Swiss-Model to build the BRN2 3D structure.
- Molecular dynamics simulations (20 ns) using NAMD for the BRN2-MORE DNA complex.
- Analysis of protein-DNA interactions and identification of key residues.
Main Results:
- A 3D model of the full-length BRN2 protein was constructed.
- The BRN2 POU domain showed structural similarity to other transcription factors.
- Molecular dynamics revealed stable protein conformation and identified key residues for DNA interaction.
Conclusions:
- The study provides the first 3D model of BRN2 in complex with MORE DNA.
- Identified BRN2 residues are crucial for specific DNA binding.
- This work can guide the development of BRN2 or MORE DNA inhibitors as melanoma drug targets.
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