Title: Biophysical Approaches to Drug Design
1Biophysical Approaches to Drug Design
Overall Organization of the Topic
- Approaches Useful in Drug Design
- Fluorescence Spectroscopy
- - Principle of Fluorescence
- - Factors governing fluorescence intensity
- - Fluorescent groups
- - Sensitivity of Fluorescence to Environment
- - Fluorescence Resonance Energy Transfer
2Biophysical Approaches Useful in Drug Design
- Absorption Spectroscopy
- Fluorescence Spectroscopy
- Infrared Spectroscopy
- Raman Spectroscopy
- Nuclear Magnetic Resonance Spectroscopy
- Electron Spin Resonance Spectroscopy
- Circular Dichroism
- Centrifugation Techniques
- X-ray Crystallography
3Fluorescence Spectroscopy
Principle
4Electronic States of Molecules
Example of Ethylene
5Obtaining Fluorescence Spectrum
6Factors Governing Fluorescence Intensity
- Internal Conversion (kIC)
- Collisional De-excitation (kQ)
- Intersystem Crossing (kIS)
7Fluorescent Groups
- Intrinsic Groups in Proteins and Nucleic Acids
- - Trp, Tyr, Phe, Cys, Adenine, Guanine,
8Fluorescent Groups
9Sensitivity of Fluorescence to Environment
- Determination of Equilibrium Dissociation
Constants
10Binding Affinities as a Function of Structure
Ligand KD DGO
(nM)
(kcal/mol) DEFGH 110-5
-19 DEFGH 110-3
-16 DEFG 34 -10.2
DEF 2,000
-7.8 EFGH 6,900 -7.0
11Fluorescence Resonance Energy Transfer
Principle
12Fluorescence Resonance Energy Transfer
Determining Substrate Specificities