DeWolf Timothy, Gordon Reuven
Department of Electrical and Computer Engineering, University of Victoria, Victoria British Columbia V8P 5C2, Canada.
Phys Rev Lett. 2016 Sep 23;117(13):138101. doi: 10.1103/PhysRevLett.117.138101. Epub 2016 Sep 21.
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.
我们提出了一种理论分析,将非凡声学拉曼(EAR)光谱[惠顿等人,《自然·光子学》9,68(2015)]的共振与蛋白质的集体模式联系起来。该理论使用各向异性弹性网络模型来寻找蛋白质声学模式,并将蛋白质视为可极化椭球体来计算拉曼强度。EAR光谱与我们的理论之间取得了合理的一致性。蛋白质声学模式已在理论上得到广泛研究,以评估它们在蛋白质功能中所起的作用;这一结果表明EAR光谱可作为研究蛋白质声学模式的一种新的实验工具。