Advanced Biocrystallogenesis

I. Kutá Smatanová, P. Havlickova, B. Kascakova, T. Prudnikova
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Abstract

Nowadays, X-ray crystallography is one of the most popular structural biology methods. Successful crystallization depends not only on the quality of the protein sample, precipitant composition, pH or other biophysical and biochemical parameters, but also largely on the use of crystallization technique. Some proteins are difficult to be crystallized using basic crystallization methods; therefore, several advanced methods for macromolecular crystallization have been developed. This chapter briefly reviews the most promising advanced crystallization techniques and strategies as one of the efficient tools for crystallization of macromolecules. Crystallization in capillaries, gels, microfluidic chips, electric and magnetic fields as well as crystallization under microgravity condition and crystallization in living cells are briefly described.
目前,x射线晶体学是最流行的结构生物学方法之一。成功的结晶不仅取决于蛋白质样品的质量、沉淀剂组成、pH值或其他生物物理和生化参数,而且在很大程度上取决于结晶技术的使用。有些蛋白质用基本结晶方法难以结晶;因此,发展了几种先进的大分子结晶方法。本章简要介绍了作为大分子结晶化的有效工具之一的最有前途的先进结晶技术和策略。简要介绍了毛细管结晶、凝胶结晶、微流控芯片结晶、电场结晶、磁场结晶、微重力结晶和活细胞结晶。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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