Xie A H, Nagle J F, Lozier R H
Biophys J. 1987 Apr;51(4):627-35. doi: 10.1016/S0006-3495(87)83387-8.
Flash spectroscopy data were obtained for purple membrane fragments at pH 5, 7, and 9 for seven temperatures from 5 degrees to 35 degrees C, at the magic angle for actinic versus measuring beam polarizations, at fifteen wavelengths from 380 to 700 nm, and for about five decades of time from 1 microsecond to completion of the photocycle. Signal-to-noise ratios are as high as 500. Systematic errors involving beam geometries, light scattering, absorption flattening, photoselection, temperature fluctuations, partial dark adaptation of the sample, unwanted actinic effects, and cooperativity were eliminated, compensated for, or are shown to be irrelevant for the conclusions. Using nonlinear least squares techniques, all data at one temperature and one pH were fitted to sums of exponential decays, which is the form required if the system obeys conventional first-order kinetics. The rate constants obtained have well behaved Arrhenius plots. Analysis of the residual errors of the fitting shows that seven exponentials are required to fit the data to the accuracy of the noise level.
在pH值为5、7和9的条件下,针对紫色膜片段获取了闪光光谱数据,温度范围为5摄氏度至35摄氏度,共七个温度点,光化光与测量光束偏振处于魔角,波长范围为380至700纳米,共十五个波长点,时间范围约为从1微秒至光循环结束的五个数量级。信噪比高达500。涉及光束几何形状、光散射、吸收平坦化、光选择、温度波动、样品部分暗适应、不必要的光化效应和协同性的系统误差已被消除、补偿或证明与结论无关。使用非线性最小二乘法技术,将一个温度和一个pH值下的所有数据拟合为指数衰减之和,这是系统遵循传统一级动力学时所需的形式。得到的速率常数具有良好的阿伦尼乌斯图。对拟合残差的分析表明,需要七个指数才能将数据拟合到噪声水平的精度。