Design evolution synthetic small protein is a M.Tech project topic for Biotechnology & Biomedical Engineering. It gives students a clear starting point for research, implementation planning, and documentation.
Design evolution synthetic small protein Project Details
| Abstract |
This project studies how to design, make, and test a new tiny protein scaffold that is based on the very stable WWβdomain prototype. Using proteinβengineering ideas, we built a synthetic library by lengthening and randomizing the loops of the WW domain while keeping its core structure unchanged. We then applied phageβdisplayβbased inβvitro evolution to pick a highβaffinity lead that binds human serum albumin (HSA), even though HSA is not a natural target for the WW domain. The chosen protein was produced both by biological expression and by chemical synthesis, and its structure and function were examined with computational models and laboratory assays. To show that the binder can be useful
in real biomedical work, we attached it to a solid matrix and tested how well it captures and purifies HSA. The work offers a solid method for creating small, versatile protein scaffolds that can target many different biomolecules, which could be valuable for diagnostic tests, targeted drug delivery, and affinityβchromatography applications in biomedical engineering.
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| Reference Paper |
Design and evolution of a synthetic small protein scaffold based on the WW domain |
| Domain |
Biotechnology & Biomedical Engineering |
| Sub-Domain |
Biomedical Devices / Tissue Engineering / Scaffold Design |
| PDF Download |
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| Get Help |
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