Physical Review Letters · 2016 · 12 citations · 50 references
Protein ChemistryProtein FunctionProtein Acoustic ModesBiochemistryPhysical AcousticProtein FoldingSpectroscopyExtraordinary Acoustic RamanNatural SciencesSurface-enhanced Raman ScatteringMolecular BiologyAcoustic Raman ModesLight Scattering SpectroscopyMedicineBiophysicsSpectroscopic Method
We present a theoretical analysis that associates the resonances of extraordinary acoustic Raman (EAR) spectroscopy [Wheaton et al., Nat. Photonics 9, 68 (2015)] with the collective modes of proteins. The theory uses the anisotropic elastic network model to find the protein acoustic modes, and calculates Raman intensity by treating the protein as a polarizable ellipsoid. Reasonable agreement is found between EAR spectra and our theory. Protein acoustic modes have been extensively studied theoretically to assess the role they play in protein function; this result suggests EAR spectroscopy as a new experimental tool for studies of protein acoustic modes.
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<i>ProDy</i>: Protein Dynamics Inferred from Theory and Experiments
Ahmet Bakan, Lidio Meireles, İvet Bahar · Bioinformatics · 2011 · 1.2K citations · Full text