首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Significant Effects of Magnetic and Gravitational Fields on the Morphology of Protein Crystals (Orthorhombic Lysozyme Crystals Grown Using NiCl_2 as Crystallization Agent)
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Significant Effects of Magnetic and Gravitational Fields on the Morphology of Protein Crystals (Orthorhombic Lysozyme Crystals Grown Using NiCl_2 as Crystallization Agent)

机译:磁场和引力场对蛋白质晶体(使用NiCl_2作为结晶剂生长的斜方溶菌酶晶体)的形态的重大影响。

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Magnetic fields (either horizontal or vertical) were found to drastically change the morphology of protein (orthorhombic lysozyme) crystals. A pair of {011} faces evident in crystal grown in the absence of a magnetic field disappeared when crystals were grown in the presence of a 10 T magnetic field. This fact suggests that a magnetic field makes the growth rate of {011} faces faster than that of {101} faces and influences the kinetics of crystal growth. Horizontal and vertical magnetic fields tended to align the c-axis of the crystal along the direction of the field. The combination of magnetic orientation of crystals and buoyancy-driven convection due to gravitational field caused the difference in the growth environments for the {110} and {1(1-bar)0} faces, resulting in differences in growth rates of these faces and thus differences in the crystal morphologies. The analysis of the crystal shapes showed that the ratio of the crystal growth rate of the top surface to that of the side surface was 0.2-1. Thus, our study shows quantitatively for the first time that the gravitational field influences the crystal morphology via buoyancy-driven convection.
机译:发现磁场(水平或垂直)会极大地改变蛋白质(斜方溶菌酶)晶体的形态。当在10 T磁场存在下生长晶体时,一对在晶体中不存在磁场的情况下明显可见的{011}面消失了。这个事实表明磁场使{011}面的生长速率快于{101}面的生长速率,并影响晶体生长的动力学。水平和垂直磁场倾向于使晶体的c轴沿着磁场方向对齐。晶体的磁性取向与重力场导致的浮力驱动对流的结合导致{110}和{1(1-bar)0}面的生长环境有所不同,从而导致这些面和因此晶体形态上的差异。晶体形状的分析表明,顶表面的晶体生长速率与侧表面的晶体生长速率之比为0.2-1。因此,我们的研究首次定量显示了重力场通过浮力驱动的对流影响晶体形态。

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