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Molecular Modeling of the Human A1 Adenosine Receptor
Angela Bookwalter Oral report #3 March 22, 1999 Advisor: Dr. Jack Wells BME 273 Senior Design Project
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Objective The goal of this project is to design and test a three-dimensional molecular model of the seventh transmembrane-spanning region of the human A1 adenosine receptor.
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Introduction Adenosine Receptor Purpose of designing model
G-protein coupled receptor Reduces oxygen need of working cells Prevents damage in short-term low-level oxygen situations Purpose of designing model Use as structure to design drugs and artificial ligands Suggest information on functioning of receptor in biological situations
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Introduction Design tools
Insight II version 97.0 molecular modeling software from Molecular Simulations, Inc. Biochemical data from Wells Lab Scientific literature
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Design of 3-D Molecular Models
Complete Secondary Structure Primary Structure Simple Secondary Structure
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Methodology Identification of transmembrane region
Hydrophobicity plots for 33 residues Literature research Lipid Membrane
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Methodology Initial coordinates Addition of Biochemical Data
Selection from similar receptors to mesh with current known locations Addition of Biochemical Data Choosing of Use of Additional Information Available
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Methodology Energy and conformation calculations
Insight II software Adjustments as dictated by mentors and additional biochemical data Final analysis
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Completed Work Acquired basic knowledge of the Insight II software using tutorials Preliminary structure analysis Literature research Development of modeling strategy Preliminary design of secondary structure
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Future Work Complete model of secondary structure of protein
Adjust model design as new data is acquired Analysis of potential model designs - especially energy minimizations Testing of final model design
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Conclusion The goal of this project will be achieved in the next week with a complete design which meets all desired specifications. Therefore, the project is progressing successfully and timely.
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