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通过极端脱水改善载脂蛋白A-IV晶体的衍射。

Improving the diffraction of apoA-IV crystals through extreme dehydration.

作者信息

Deng Xiaodi, Davidson W Sean, Thompson Thomas B

机构信息

Department of Molecular Genetics, Biochemistry and Microbiology, College of Medicine, University of Cincinnati, Cincinnati, Ohio, USA.

出版信息

Acta Crystallogr Sect F Struct Biol Cryst Commun. 2012 Jan 1;68(Pt 1):105-10. doi: 10.1107/S1744309111048706. Epub 2011 Dec 24.

Abstract

Apolipoproteins are the protein component of high-density lipoproteins (HDL), which are necessary for mobilizing lipid-like molecules throughout the body. Apolipoproteins undergo self-association, especially at higher concentrations, making them difficult to crystallize. Here, the crystallization and diffraction of the core fragment of apolipoprotein A-IV (apoA-IV), consisting of residues 64-335, is presented. ApoA-IV(64-335) crystallized readily in a variety of hexagonal (P6) morphologies with similar unit-cell parameters, all containing a long axis of nearly 550 Å in length. Preliminary diffraction experiments with the different crystal morphologies all resulted in limited streaky diffraction to 3.5 Å resolution. Crystal dehydration was applied to the different morphologies with variable success and was also used as a quality indicator of crystal-growth conditions. The results show that the morphologies that withstood the most extreme dehydration conditions showed the greatest improvement in diffraction. One morphology in particular was able to withstand dehydration in 60% PEG 3350 for over 12 h, which resulted in well defined intensities to 2.7 Å resolution. These results suggest that the approach of integrating dehydration with variation in crystal-growth conditions might be a general technique to optimize diffraction.

摘要

载脂蛋白是高密度脂蛋白(HDL)的蛋白质成分,对于在全身转运类脂分子是必需的。载脂蛋白会发生自我缔合,尤其是在较高浓度时,这使得它们难以结晶。在此,展示了载脂蛋白A-IV(apoA-IV)核心片段(由64-335位残基组成)的结晶和衍射情况。ApoA-IV(64-335)很容易以各种具有相似晶胞参数的六方(P6)形态结晶,所有这些形态都包含一条长度近550 Å的长轴。对不同晶体形态进行的初步衍射实验均产生了有限的条纹衍射,分辨率达到3.5 Å。对不同形态的晶体进行脱水处理,效果各异,脱水处理也被用作晶体生长条件的质量指标。结果表明,经受最极端脱水条件的形态在衍射方面有最大改善。特别是有一种形态能够在60%的聚乙二醇3350中经受超过12小时的脱水,这使得分辨率达到2.7 Å时能获得清晰的衍射强度。这些结果表明,将脱水与晶体生长条件变化相结合的方法可能是一种优化衍射的通用技术。

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