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Observation of Etch Figures on Protein Crystals by Atomic Force Microscopy

机译:用原子力显微镜观察蛋白质晶体上的蚀刻图

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Etch figures on the (110) face of hen egg white lysozyme crystals in aqueous solution were investigated by atomic force microscopy. Three types of etch pits with flat, "deep" flat and point bottoms were observed. All etch pits are elongated to the [-110] direction, similar to the growth of 2D islands. The etch pit density of contaminated crystals, fabricated from a widely used commercial sample, was approximately ten times greater than that of pure crystals. Moreover, the density of "deep" flat bottom pits on contaminated crystals increased with supersaturation, while their density on pure crystals remained almost constant. These results suggest that the impurity molecules incorporated during growth and the line defects, such as edge dislocations, induced by the molecules are the dominant defects in lysozyme crystals grown from commercially available samples.
机译:通过原子力显微镜研究了水溶液中鸡蛋清溶菌酶晶体的(110)面上的蚀刻图。观察到具有平坦,“深”平坦和点底的三种类型的蚀刻坑。所有蚀刻坑都向[-110]方向延伸,类似于2D岛的生长。由广泛使用的商业样品制造的受污染晶体的蚀刻坑密度大约是纯晶体的蚀刻坑密度的十倍。此外,受污染晶体上“深”平底坑的密度随着过饱和度的增加而增加,而它们在纯晶体上的密度几乎保持恒定。这些结果表明,在生长过程中掺入的杂质分子和由分子诱导的线缺陷(例如边缘位错)是从可商购样品中生长的溶菌酶晶体中的主要缺陷。

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