Fluorescence decay characteristics of indole compounds revealed by time-resolved area-normalized emission spectroscopy
- PMID: 19254015
- DOI: 10.1021/jp8078937
Fluorescence decay characteristics of indole compounds revealed by time-resolved area-normalized emission spectroscopy
Abstract
Time-resolved fluorescence spectroscopy of tryptophan residue has been extensively applied to the studies on structure-function relationships of protein. Regardless of this, the fluorescence decay mechanism and kinetics of tryptophan residue in many proteins still remains unclear. Previous studies have demonstrated that conformational heterogeneity and relaxation dynamics are both involved in the peculiar multiexponential decay kinetics in subnanosecond resolution. In the present study, we characterized the fluorescence decay property of six indole compounds in glycerol by resolving the contribution of conformational heterogeneity and relaxation dynamics. We applied the time-resolved area-normalized fluorescence emission spectrum (TRANES) method for the fluorescence decay analysis. The results of TRANES, time-dependent shift of fluorescence spectral center of gravity, and fluorescence decay simulation demonstrated that the dielectric relaxation process independent of intrinsic rotamer/conformer and the individual fluorescence lifetime gives the peculiarity to the fluorescence decay of indole compounds. These results confirmed that TRANES and time-dependent spectral shift analysis are potent methods to resolve the origin of multiexponential decay kinetics of tryptophyl fluorescence in protein.
Similar articles
-
Multiple conformational state of human serum albumin around single tryptophan residue at various pH revealed by time-resolved fluorescence spectroscopy.J Biochem. 2010 Feb;147(2):191-200. doi: 10.1093/jb/mvp175. Epub 2009 Nov 2. J Biochem. 2010. PMID: 19884191
-
Fast-gated intensified charge-coupled device camera to record time-resolved fluorescence spectra of tryptophan.Appl Spectrosc. 2004 Jun;58(6):705-10. doi: 10.1366/000370204872908. Appl Spectrosc. 2004. PMID: 15198823
-
Spectrally and time-resolved fluorescence spectroscopic study on melittin-calmodulin interaction.J Biochem. 2007 Nov;142(5):655-61. doi: 10.1093/jb/mvm180. Epub 2007 Sep 28. J Biochem. 2007. PMID: 17905811
-
[What determines the characteristics of the intrinsic UV-fluorescence of proteins? Analysis of the properties of the microenvironment and features of the localization of their tryptophan residues].Tsitologiia. 1998;40(8-9):747-62. Tsitologiia. 1998. PMID: 9821245 Review. Russian.
-
[Protein dynamics revealed by an ultrafast time-resolved spectroscopy of tryptophan].Tanpakushitsu Kakusan Koso. 1990 Oct;35(13):2223-33. Tanpakushitsu Kakusan Koso. 1990. PMID: 2255762 Review. Japanese. No abstract available.
Cited by
-
Sugar binding effects on the enzymatic reaction and conformation near the active site of pokeweed antiviral protein revealed by fluorescence spectroscopy.J Fluoresc. 2014 May;24(3):951-8. doi: 10.1007/s10895-014-1378-z. Epub 2014 Apr 4. J Fluoresc. 2014. PMID: 24696383
-
Structural characteristic of folding/unfolding intermediate of pokeweed anti-viral protein revealed by time-resolved fluorescence.J Fluoresc. 2013 May;23(3):407-15. doi: 10.1007/s10895-013-1155-4. Epub 2013 Jan 15. J Fluoresc. 2013. PMID: 23319009
-
Thin-Plate Superstructures of the Immunogenic 33-mer Gliadin Peptide.Chembiochem. 2022 Nov 18;23(22):e202200552. doi: 10.1002/cbic.202200552. Epub 2022 Oct 18. Chembiochem. 2022. PMID: 36161684 Free PMC article.
-
Dynamic Long-Range Interactions Influence Substrate Binding and Catalysis by Human Histidine Triad Nucleotide-Binding Proteins (HINTs), Key Regulators of Multiple Cellular Processes and Activators of Antiviral ProTides.Biochemistry. 2022 Dec 6;61(23):2648-2661. doi: 10.1021/acs.biochem.2c00506. Epub 2022 Nov 18. Biochemistry. 2022. PMID: 36398895 Free PMC article.
MeSH terms
Substances
LinkOut - more resources
Full Text Sources