Several new classes of luminescent metal ion substitutional probe experiments for the study of the structure and function of calcium-binding proteins and nucleic acids are developed and exploited. A pulsed nitrogen laser-pumped dye laser excitation source allows the observation on dilute solutions of emission from the ordinarily weakly luminescent trivalent lanthanide ions. Measurement of the excited state lifetimes of these ions (principally europium(III) and terbium(III) in both H2O and D2O solution provides a direct measure of the number of water molecules coordinated to the metal ion. Lifetime measurements also monitor inter-ionic (lanthanide to transition metal and interlanthanide) Forster-type energy transfer which permits the estimation of distances between metal ion binding sites in macromolecules. Characterization of individual distinct binding sites is made possible by europium(III) excitation spectroscopy. This method involves the observation of the 7Fo yields 5Do transition between nondegenerate states by scanning the excitation laser source frequency and monitoring emission from the 5Do level. Different europium(III) binding sites give rise to distinct excitation peaks, each characterized by its excited state lifetime. Luminescence emissions will be examined under high resolution to probe the metal ion coordination site. The fluorescent amino acid or nucleotide base to lanthanide ion energy transer which sometimes sensitizes lanthanide emission will be investigated. Among the macromolecules we intend to probe by our techniques are: thermolysin, parvalbumin, alpha-amylase, phosphoglycerate kinase, prothrombin, troponin C, phospholipase A2, immunoglobulin, Ca-ATPase, calmodulin, staphylococcal nuclease and t-RNA.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM023599-09
Application #
3271767
Study Section
Biophysics and Biophysical Chemistry A Study Section (BBCA)
Project Start
1977-01-01
Project End
1985-12-31
Budget Start
1985-01-01
Budget End
1985-12-31
Support Year
9
Fiscal Year
1985
Total Cost
Indirect Cost
Name
Pennsylvania State University
Department
Type
Schools of Arts and Sciences
DUNS #
City
University Park
State
PA
Country
United States
Zip Code
16802
Supkowski, Ronald M; DeW Horrocks Jr, William (2003) Lanthanide ions as probes of electron transfer in proteins. Met Ions Biol Syst 40:281-322
Chaudhuri, D; Horrocks Jr, W D; Amburgey, J C et al. (1997) Characterization of lanthanide ion binding to the EF-hand protein S100 beta by luminescence spectroscopy. Biochemistry 36:9674-80
Bruno, J; Horrocks Jr, W D; Beckingham, K (1996) Characterization of Eu(III) binding to a series of calmodulin binding site mutants using laser-induced Eu(III) luminescence spectroscopy. Biophys Chem 63:1-16
Reynaldo, L P; Villafranca, J J; Horrocks Jr, W D (1996) Investigating the effects of posttranslational adenylylation on the metal binding sites of Escherichia coli glutamine synthetase using lanthanide luminescence spectroscopy. Protein Sci 5:2532-44
Frey, M W; Frey, S T; Horrocks Jr, W D et al. (1996) Elucidation of the metal-binding properties of the Klenow fragment of Escherichia coli polymerase I and bacteriophage T4 DNA polymerase by lanthanide(III) luminescence spectroscopy. Chem Biol 3:393-403
Burroughs, S E; Horrocks Jr, W D; Ren, H et al. (1994) Characterization of the lanthanide ion-binding properties of calcineurin-B using laser-induced luminescence spectroscopy. Biochemistry 33:10428-36
Horrocks Jr, W D (1993) Luminescence spectroscopy. Methods Enzymol 226:495-538
Cronce, D T; Horrocks Jr, W D (1992) Probing the metal-binding sites of cod parvalbumin using europium(III) ion luminescence and diffusion-enhanced energy transfer. Biochemistry 31:7963-9
Amann, B T; Mulqueen, P; Horrocks Jr, W D (1992) A continuous spectrophotometric assay for the activation of plant NAD kinase by calmodulin, calcium(II), and europium(III) ions. J Biochem Biophys Methods 25:207-17
Bruno, J; Horrocks Jr, W D; Zauhar, R J (1992) Europium(III) luminescence and tyrosine to terbium(III) energy-transfer studies of invertebrate (octopus) calmodulin. Biochemistry 31:7016-26

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