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Visualization of RNA crystal growth by atomic force microscopy

机译:通过原子力显微镜观察RNA晶体的生长

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The crystallization of transfer RNA (tRNA) was investigated using atomic force microscopy (AFM) over the temperature range from 4 to 16 degrees C, and this produced the first in situ AFM images of developing nucleic acid crystals. The growth of the (110) face of hexagonal yeast tRNAPhe crystals was observed to occur at steps on vicinal hillocks generated by multiple screw dislocation sources in the temperature range of 13.5-16 degrees C. Two-dimensional nucleation begins to dominate at 13.5 degrees C, with the appearance of three-dimensional nuclei at 12 degrees C. The changes in growth mechanisms are correlated with variations in supersaturation which is higher in the low temperature range. Growth of tRNA crystals was characterized by a strong anisotropy in the tangential step movement and transformation of growth modes on single crystals were directly observed by AFM over the narrow temperature range utilized. Finally, lattice resolution images of the molecular structure of surface layers were recorded. The implications of the strong temperature dependence of tRNAPhe crystal growth are discussed in view of improving and better controlling crystallization of nucleic acids.
机译:使用原子力显微镜(AFM)在4至16摄氏度的温度范围内研究了转移RNA(tRNA)的结晶,这产生了发育中的核酸晶体的第一张原位AFM图像。观察到六角形酵母tRNAPhe晶体的(110)面的生长在13.5-16摄氏度的温度范围内在多个螺旋位错源产生的邻近丘陵台阶上发生。二维成核在13.5摄氏度开始占主导地位,在12摄氏度时出现三维核。生长机制的变化与过饱和度的变化相关,在低温范围内过饱和度的变化更大。 tRNA晶体的生长特征是在切向步移中具有很强的各向异性,并且在所使用的狭窄温度范围内通过AFM直接观察到单晶上生长模式的转变。最后,记录了表面层分子结构的晶格分辨率图像。考虑到改善和更好地控制核酸的结晶,讨论了tRNAPhe晶体生长的强烈温度依赖性的含义。

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