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溶菌酶在浓硫酸铵溶液中沉淀和结晶的动力学与平衡

Kinetics and equilibria of lysozyme precipitation and crystallization in concentrated ammonium sulfate solutions.

作者信息

Cheng Yu-Chia, Lobo Raul F, Sandler Stanley I, Lenhoff Abraham M

机构信息

Department of Chemical Engineering, University of Delaware, Newark, 19716, USA.

出版信息

Biotechnol Bioeng. 2006 May 5;94(1):177-88. doi: 10.1002/bit.20839.

Abstract

The kinetics and thermodynamics of lysozyme precipitation in ammonium sulfate solutions at pH 4 and 8 and room temperature were studied. X-ray powder diffraction (XRD) was used to characterize the structure of lysozyme precipitates. It was found that, if sufficient time was allowed, microcrystals developed following an induction period after initial lysozyme precipitation, even up to ionic strengths of 8 m and at acidic pH, where lysozyme is refractory to crystallization in ammonium sulfate. The full set of precipitation and crystallization data allowed construction of a phase diagram of lysozyme, showing the ammonium sulfate dependence. It suggests that precipitation may reflect a frustrated metastable liquid-liquid phase separation, which would allow this process to be understood within the framework of the generic phase diagram for proteins. The results also demonstrate that XRD, more frequently used for characterizing inorganic and organic polycrystalline materials, is useful both in characterizing the presence of crystals in the dense phase and in verifying the crystal form of proteins.

摘要

研究了在pH值为4和8以及室温条件下,溶菌酶在硫酸铵溶液中的沉淀动力学和热力学。采用X射线粉末衍射(XRD)对溶菌酶沉淀物的结构进行表征。结果发现,如果给予足够的时间,即使在离子强度高达8 m且处于酸性pH值(此时溶菌酶在硫酸铵中难以结晶)的情况下,初始溶菌酶沉淀后的诱导期过后也会形成微晶。完整的沉淀和结晶数据使得构建溶菌酶相图成为可能,该相图显示了对硫酸铵的依赖性。这表明沉淀可能反映了一种受阻的亚稳液 - 液相分离,这将使该过程能够在蛋白质通用相图的框架内得到理解。结果还表明,XRD更常用于表征无机和有机多晶材料,它在表征致密相中晶体的存在以及验证蛋白质的晶体形态方面都很有用。

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