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丝状噬菌体Pf1在4埃分辨率下电子密度的最大熵计算。

Maximum-entropy calculation of the electron density at 4 A resolution of Pf1 filamentous bacteriophage.

作者信息

Bryan R K, Bansal M, Folkhard W, Nave C, Marvin D A

出版信息

Proc Natl Acad Sci U S A. 1983 Aug;80(15):4728-31. doi: 10.1073/pnas.80.15.4728.

Abstract

A 4 A electron-density map of Pf1 filamentous bacterial virus has been calculated from x-ray fiber diffraction data by using the maximum-entropy method. This method produces a map that is free of features due to noise in the data and enables incomplete isomorphous-derivative phase information to be supplemented by information about the nature of the solution. The map shows gently curved (banana-shaped) rods of density about 70 A long, oriented roughly parallel to the virion axis but slewing by about 1/6th turn while running from a radius of 28 A to one of 13 A. Within these rods, there is a helical periodicity with a pitch of 5 to 6 A. We interpret these rods to be the helical subunits of the virion. The position of strongly diffracted intensity on the x-ray fiber pattern shows that the basic helix of the virion is right handed and that neighboring nearly parallel protein helices cross one another in an unusual negative sense.

摘要

通过使用最大熵方法,已根据X射线纤维衍射数据计算出Pf1丝状细菌病毒的A 4 A电子密度图。该方法生成的图谱没有因数据噪声而产生的特征,并且能够用溶液性质的信息补充不完整的同晶型衍生物相位信息。该图谱显示出密度约为70埃长的轻微弯曲(香蕉形)棒状物,大致平行于病毒粒子轴定向,但在从28埃的半径延伸到13埃的半径时旋转约1/6圈。在这些棒状物中,存在螺距为5至6埃的螺旋周期性。我们将这些棒状物解释为病毒粒子的螺旋亚基。X射线纤维图案上强衍射强度的位置表明,病毒粒子的基本螺旋是右手螺旋,并且相邻的几乎平行的蛋白质螺旋以不寻常的负向相互交叉。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3ea/384117/394295670dbe/pnas00641-0139-a.jpg

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