Real time measurements of energy and angular fluctuations in peptides and proteins using ultrafast optical, stimulated IR echoes, 2D IR and single molecule spectroscopy are proposed to examine interactions and correlations between vibrational modes and their surroundings for isotopic selections of peptides and proteins. Time correlation functions for amide-I, amide-II, CH3 and amide-A groups selected by carbon, oxygen and deuterium isotopic replacement will be measured and modeled. The influence of electrostatics, solvent interactions and structural heterogeniety on delocalization of vibrational energy in peptides will be examined. IR photon echoes and dynamic 2D IR will allow characterization of the solvent related energy fluctuations of selected pieces of alpha helices, and evaluation of effects of charged residues and polar solvents from the vibrational dynamics, and fast hydrogen bond dissociation dynamics of water molecules (HDO) from ions nearby to proteins. The dynamics of cytochrome c at equilibrium and following CO photolysis will be examined by 2D IR of 18O, 13C and deuterium labeled residues to determine the fluctuations in the Met (80) residue and Phe (82). Infrared transitions of optically excited aggregates will be examined and theoretical models for amide IR spectra in secondary structures will be developed. Single molecule experiments based on spectra, lifetime and photon arrival time distributions will address equilibrium fluctuations of the glass and hydrogel encapsulated calcium calmodulin peptide complex via Nile Red fluorecence quenching, LH2 complexes, trehalose protein interactions and the distributions of rates of energy transfer in donor and acceptor labeled peptides immobilized in glasses and gels near the glass transitions.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Program Projects (P01)
Project #
5P01GM048130-13
Application #
7269528
Study Section
Special Emphasis Panel (ZRG1)
Project Start
Project End
Budget Start
2006-08-01
Budget End
2007-07-31
Support Year
13
Fiscal Year
2006
Total Cost
$115,978
Indirect Cost
Name
University of Pennsylvania
Department
Type
DUNS #
042250712
City
Philadelphia
State
PA
Country
United States
Zip Code
19104
Fry, Bryan A; Solomon, Lee A; Leslie Dutton, P et al. (2016) Design and engineering of a man-made diffusive electron-transport protein. Biochim Biophys Acta 1857:513-521
Goparaju, Geetha; Fry, Bryan A; Chobot, Sarah E et al. (2016) First principles design of a core bioenergetic transmembrane electron-transfer protein. Biochim Biophys Acta 1857:503-512
Sharp, Kim A; Vanderkooi, Jane M (2010) Water in the half shell: structure of water, focusing on angular structure and solvation. Acc Chem Res 43:231-9
Zelent, Bogumil; Sharp, Kim A; Vanderkooi, Jane M (2010) Differential scanning calorimetry and fluorescence study of lactoperoxidase as a function of guanidinium-HCl, urea, and pH. Biochim Biophys Acta 1804:1508-15
Coleman, Ryan G; Sharp, Kim A (2010) Shape and evolution of thermostable protein structure. Proteins 78:420-33
Coleman, Ryan G; Sharp, Kim A (2010) Protein pockets: inventory, shape, and comparison. J Chem Inf Model 50:589-603
Zelent, B; Vanderkooi, J M (2009) Infrared spectroscopy used to study ice formation: the effect of trehalose, maltose, and glucose on melting. Anal Biochem 390:215-7
Coleman, Ryan G; Sharp, Kim A (2009) Finding and characterizing tunnels in macromolecules with application to ion channels and pores. Biophys J 96:632-45
Zelent, Bogumil; Vanderkooi, Jane M; Nucci, Nathaniel V et al. (2009) Phosphate assisted proton transfer in water and sugar glasses: a study using fluorescence of pyrene-1-carboxylate and IR spectroscopy. J Fluoresc 19:21-31
Frederick, Kendra King; Sharp, Kim A; Warischalk, Nicholas et al. (2008) Re-evaluation of the model-free analysis of fast internal motion in proteins using NMR relaxation. J Phys Chem B 112:12095-103

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