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Fluorescent proteins. Excitation and Emission Wavelengths of AFP proteins.

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Presentation on theme: "Fluorescent proteins. Excitation and Emission Wavelengths of AFP proteins."— Presentation transcript:

1 Fluorescent proteins

2 Excitation and Emission Wavelengths of AFP proteins

3 Strategy of FRET between CFP and YFP

4 Biochemical Modulation of AFP fluorescence

5 The General Design of FRET-based Fluorescent Probes

6 Some early indicators for second messenger

7 Using fluorescence protein to imaging signaling transduction

8 Biological Questions on GPCR Dimer/oligomerization Ligand induced Conformational change G protein coupling Second messenger signaling cAMP/PKA, PKC, DAG, IP3, Ca2+ Scaffold protein/signal complex

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12 Biological Questions on GPCR Dimer/oligomerization –Homo/hetreo dimer –Constitutive vesus ligand induced dimer –Dimer in receptor maturation in ER –New agonism –Functional diversity and Signaling integration

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17 Biological Questions on GPCR Ligand induced Conformational change –Structural functional study –Agonism/antagonism –Receptor activation

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21 Biological Questions on GPCR G protein coupling *Real time activation *Screen model for drug discovery *Signaling/function co-relation. *Single cell study, instead of biochemical assay of GTP  S binding

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23 Biological Questions on GPCR Second messenger signaling cAMP/PKA, PKC, DAG, IP3, Ca2+ Spatial and temporal resolution Localized signaling properties, specificity and efficiency. Specific function

24 Restricted cAMP signaling in cardiac myocytes cAMP indicator

25 Promiscuous G protein Coupling by GPCR

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27 Go-CFP resistant to PTX, Cell pretreated with PTX

28 CFP 430+12.5nM 465+20nM YFP 500+10nM 535+15nM FRET 430+12.5NM, 535+15nM

29 Control CFP 430+12.5nM 465+20nM YFP 500+10nM 535+15nM FRET 430+12.5NM, 535+15nM

30 CFP 430+12.5nM 465+20nM YFP 500+10nM 535+15nM FRET 430+12.5NM, 535+15nM

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32 514nM laser line bleach YFP about 70%-90% Concomitant CFP bleach about 7-10%

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34 Figure 6, Quantitative Analyses of FRET a2A-YFP + Go-CFP a2A-YFP + Gs-CFP Donor(Go):acceptor(receptor) at 1:1, a proportion of receptor is not coupled to G protein Increaing the ration leads to higher degree of precoupling. In physiological conditions, G proteins are in significant excess compared to receptor, thus a large majority of receptor are precoupled.

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