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Crystalline tubes of myosin subfragment-2 showing the coiled-coil and molecular interaction geometry

机译:肌球蛋白亚片段2的晶体管显示卷曲螺旋和分子相互作用的几何形状

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摘要

We have produced crystalline tubes of chicken breast myosin long subfragment-2 that show order to resolutions better than 2 nm. The tubes were formed from a thin sheet in which the myosin long subfragment-2 molecules were arranged on an approximately rectangular crystalline lattice with a = 14.1 +/- 0.2 nm and b = 3.9 +/- 0.1 nm in projection. Shadowing indicated that the tube wall was approximately 7 nm thick and that the sheets from which it was formed followed a right- handed helix. Superposition of the lattices from the top and bottom of the tube produced a moire pattern in negatively stained material, but images of single sheets were easily obtained by computer image processing. Although several molecules were superimposed perpendicular to the plane of the sheet, the modulation in density due to the coiled- coil envelope was clear, indicating that the coiled-coils in these molecules were in register (or staggered by an even number of quarter pitches). In projection the coiled-coil had an apparent pitch of 14.1 nm (the axial repeat of the unit cell), but the small number of molecules (probably four) superimposed perpendicular to the plane of the sheet meant that pitches within approximately 1 nm of this value could have shown a modulation. Therefore, a more precise determination of the coiled-coil pitch must await determination of the sheet's three- dimensional structure. The coiled-coils of adjacent molecules within the plane of the sheet were staggered by an odd number of quarter pitches. This arrangement was similar to that between paramyosin molecules in molluscan thick filaments and may have features in common with other coiled-coil protein assemblies, such as intermediate filaments. Each molecule in the crystal had two types of neighbor: one staggered by an odd number of quarter pitches and the other by an even number of quarter pitches, as has been proposed for the general packing of coiled-coils (Longley, W., 1975, J. Mol. Biol., 93:111-115). We propose a model for the detailed packing within the sheet whereby molecules are inclined slightly to the plane of the sheet so that its thickness is determined by the molecular length.
机译:我们生产了鸡胸肌球蛋白长片段2的晶体管,其分辨率优于2 nm。管由薄板形成,其中肌球蛋白长的亚片段2分子布置在投影为a = 14.1 +/- 0.2nm和b = 3.9 +/- 0.1nm的近似矩形晶格上。阴影表明管壁约7 nm厚,形成管壁的板片遵循右旋螺旋线。从管的顶部和底部开始的格子的叠加在负染的材料中产生了莫尔条纹,但是通过计算机图像处理很容易获得单张图像。尽管几个分子垂直于纸张的平面叠加,但由于盘绕的线圈包络线引起的密度调制很明显,表明这些分子中的盘绕线圈对齐(或错开了偶数个四分之一间距) 。在投影中,盘绕线圈的表观间距为14.1 nm(单位晶格的轴向重复),但是垂直于薄板平面叠加的少量分子(大约四个)意味着间距约为1 nm值可能显示出调制。因此,盘绕螺距的更精确的确定必须等待片材的三维结构的确定。在薄板平面内,相邻分子的盘绕线圈错开了奇数个四分之一节距。这种排列类似于软体动物粗丝中副肌球蛋白分子之间的排列,并且可能具有与其他卷曲螺旋蛋白组件(例如中间丝)相同的特征。晶体中的每个分子都有两种类型的相邻分子:一种被奇数个四分之一节距错开,另一种被偶数个四分之一节距错开,这是针对盘绕线圈的一般包装所提出的(Longley,W.,1975)。 ,J.Mol.Biol.93:111-115)。我们提出了一种用于薄片内详细填充的模型,其中,分子相对于薄片平面略微倾斜,因此其厚度由分子长度决定。

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