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Exposure of tryptophanyl residues in proteins. Quantitative determination by fluorescence quenching studies

Biochemistry · 1976 · Vol. 15(3) · pp. 672–680

Abstract

Acrylamide is an efficient quencher of tryptophanyl fluorescence which we report to be very discriminating in sensing the degree of exposure of this residue in proteins. The quenching reaction involves physical contact between the quencher and an excited indole ring, and can be kinetically described in terms of a collisional and a static component. The rate constant for the collisional component is a kinetic measure of the exposure of a residue in a protein, and values ranging from 4 X 10(9) M-1 S-1 for the fully exposed tryptophan in the polypeptide, adrenocorticotropin, to less than 5 X 10(8) M-1 S-1 for the buried residue in azurin have been found. Static quenching is readily detected in proteins that are denatured, or contain only a single fluorophor. Quenching patterns for most multi-tryptophan containing proteins are difficult to analyze precisely, but qualitative information can, nevertheless, be extracted. Applications of this probing technique for monitoring protein conformational changes, such as the acid-induced expansion of human serum albumin, and inhibitor binding to enzymes, are presented. The value of this method lies in its ability to sense not only the steady-state exposure of a residue in a protein, but also its dynamic exposure.

Protein Interaction Studies and Fluorescence AnalysisMicrobial metabolism and enzyme functionHemoglobin structure and functionTryptophanQuenching (fluorescence)ChemistryResidue (chemistry)FluorescenceIndole testAcrylamideKineticsPhotochemistryBiophysics

MeSH terms

AcrylamidesBinding SitesMathematicsProtein BindingSpectrometry, FluorescenceTryptophan

Funding

  • National Science Foundation
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References
Removal of Fatty Acids from Serum Albumin by Charcoal Treatment
Journal of Biological Chemistry · 1967 · 2,102 citations
The ultraviolet fluorescence of proteins in neutral solution
Biochemical Journal · 1960 · 786 citations
The interpretation of protein structures: Estimation of static accessibility
Journal of Molecular Biology · 1971 · 5,866 citations
Photoluminescence of solutions
Journal of Chromatography A · 1969 · 1,753 citations
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