Logovinsky V, Kaposi A D, Vanderkooi J M
Department of Biochemistry and Biophysics, School of Medicine, University of Pennsylvania, Philadelphia 19104.
Biochim Biophys Acta. 1993 Feb 13;1161(2-3):149-60. doi: 10.1016/0167-4838(93)90208-9.
Fluorescence Line Narrowing (FLN) spectroscopy was employed to compare the environment around the porphyrin in folded and unfolded Zn-substituted cytochrome c (Zn cyt c). Parameters of the resolved spectra, including the inhomogeneous energy-distribution function, vibrational energy levels, and phonon coupling, were compared for guanidine-denatured Zn cyt c and native Zn cyt c. The spectra of denatured Zn cyt c showed increased broad background and decreased peak resolution when compared to the native protein, indicating that denaturation results in increased phonon coupling. The energy-distribution function for the unfolded protein was fitted to a single Gaussian centered at 17,230 cm-1 with a width of approx. 360 cm-1, which proved to be blue shifted and much wider than that for native Zn cyt c (approx. 65 cm-1). Vibrational frequencies of the ground-state for Zn cyt c were identified and shown to change upon denaturation. Temperature-dependence of the FLN spectra of native Zn cyt c was analyzed and found to have step-like broadening between 40 K and 50 K. Such discontinuous spectral broadening behavior suggests that a discrete conformational change occurs in the protein at these temperatures.
采用荧光谱线变窄(FLN)光谱法比较折叠态和非折叠态锌取代细胞色素c(Zn cyt c)中卟啉周围的环境。比较了胍变性Zn cyt c和天然Zn cyt c的分辨光谱参数,包括非均匀能量分布函数、振动能级和声子耦合。与天然蛋白质相比,变性Zn cyt c的光谱显示背景加宽且峰分辨率降低,表明变性导致声子耦合增加。非折叠蛋白的能量分布函数拟合为一个以17230 cm-1为中心、宽度约为360 cm-1的单高斯函数,结果表明其发生了蓝移,且比天然Zn cyt c的宽得多(约65 cm-1)。确定了Zn cyt c基态的振动频率,并表明其在变性时会发生变化。分析了天然Zn cyt c的FLN光谱的温度依赖性,发现在40 K至50 K之间有阶梯状展宽。这种不连续的光谱展宽行为表明,在这些温度下蛋白质发生了离散的构象变化。