Homology Modeling Structural Docking Analysis is a M.Tech project topic for Biotechnology & Biomedical Engineering. It gives students a clear starting point for research, implementation planning, and documentation.
Homology Modeling Structural Docking Analysis Project Details
| Abstract |
This project studies the human BrainβDerived Neurotrophic Factor (BDNF) using computer methods. BDNF is key for neuronal plasticity, synaptic transmission, and also shows up in cancer pathways, so knowing its threeβdimensional shape is important for designing drugs. First, we examine the protein sequence to calculate physicochemical properties such as charge, polarity, solubility, stability, and the Grand Average of Hydropathicity (GRAVY) index. Next, we predict BDNFβs tertiary structure with homology modeling and validate the secondary structure to see the distribution of Ξ±βhelices and Ξ²βsheets. Then we perform virtual screening and molecular docking using tools like PyRx to find potential therapeutic compounds. We test ligands such as IND24, Congo red, and Neoamphimedine
and record their binding affinities to the modeled BDNF receptor. Finally, we add a proteinβprotein interaction network analysis to map the signaling cascades linked to BDNF. This computational workflow gives a clear path for studying neurotrophin dynamics and supports the design of new smallβmolecule modulators.
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| Reference Paper |
Homology Modeling and Structural Docking Analysis on a Human BDNF Gene by Using Computational Algorithms |
| Domain |
Biotechnology & Biomedical Engineering |
| Sub-Domain |
Computational Biology |
| PDF Download |
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| Get Help |
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