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Electron crystallographic analysis of two-dimensional streptavidin crystals coordinated to metal-chelated lipid monolayers.

机译:二维链霉亲和素晶体与金属螯合脂质单分子层的电子晶体学分析。

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摘要

Coordination of individual histidine residues located on a protein surface to metal-chelated lipid monolayers is a potentially general method for crystallizing proteins in two dimensions. It was shown recently by Brewster angle microscopy (BAM) that the model protein streptavidin binds via its surface histidines to Cu-DOIDA lipid monolayers, and aggregates into regularly shaped domains that have the appearance of crystals. We have used electron microscopy to confirm that the domains are indeed crystalline with lattice parameters similar to those of the same protein crystallized beneath biotinylated lipid monolayers. Although BAM demonstrates that the two-dimensional protein crystals grown via metal chelation are distinct from the biotin-bound crystals in both microscopic shape and thermodynamic behavior, the two crystal types show similar density projections and the same plane group symmetry.
机译:位于蛋白质表面的单个组氨酸残基与金属螯合脂质单层的配位是使蛋白质二维结晶的潜在普遍方法。布鲁斯特角显微镜(BAM)最近表明,模型蛋白链霉亲和素通过其表面组氨酸与Cu-DOIDA脂质单层结合,并聚集成规则形状的结构域,具有晶体外观。我们已经使用电子显微镜来确认这些域的确是结晶的,其晶格参数类似于在生物素化脂质单层下结晶的同一蛋白质的晶格参数。虽然BAM证明了通过金属螯合生长的二维蛋白质晶体在微观形状和热力学行为上都不同于生物素结合的晶体,但两种晶体类型显示出相似的密度投影和相同的平面基团对称性。

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