Bendet I J, Mayfield J E
Department ofBiophysics, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.
Biophys J. 1967 Jan;7(1):111-9. doi: 10.1016/S0006-3495(67)86578-0. Epub 2008 Dec 31.
The internal structure of the bacterial virus fd was investigated by ultraviolet dichroism of virus solutions oriented by flow through a small capillary tube. The dichroism was found to be positive for wavelengths longer than 262 mmicro and shorter than 239 mmicro, and negative for the intermediate wavelengths. The magnitude of the effect was at all times small, with dichroic ratios of 1.22 and 0.83 at 280 mmicro and 250 mmicro, respectively. the intuitive interpretation that this was the result of the addition of negative DNA dichroism and positive protein dichroism was confirmed by the application of a simple theory which allowed the calculation from protein and DNA absorption data of a dichroism curve closely approximating the experimental one. The parameters arrived at by this procedure indicate a semiangle of 25 degrees +/-5 degrees for a cone described by the normals to the DNA base planes inside the virus. The protein absorbers tryptophan and probably tyrosine were found to be oriented on the average relatively parallel to the longitudinal axis of the virus.
通过对流经小毛细管的病毒溶液进行紫外二色性研究,对细菌病毒fd的内部结构进行了探究。发现对于波长大于262微米且小于239微米的光,二色性为正,而对于中间波长的光,二色性为负。这种效应的大小始终较小,在280微米和250微米处的二色性比率分别为1.22和0.83。通过应用一个简单理论证实了这样一种直观解释,即这是负的DNA二色性和正的蛋白质二色性相加的结果,该理论允许根据蛋白质和DNA吸收数据计算出一条与实验曲线非常接近的二色性曲线。通过该程序得出的参数表明,病毒内部DNA碱基平面法线所描述的圆锥半角为25度±5度。发现蛋白质吸收体色氨酸以及可能还有酪氨酸平均相对平行于病毒的纵轴定向。