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An approach to crystallizing proteins by metal-mediated synthetic symmetrization

机译:通过金属介导的合成对称化结晶蛋白质的方法

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摘要

Combining the concepts of synthetic symmetrization with the approach of engineering metal-binding sites, we have developed a new crystallization methodology termed metal-mediated synthetic symmetrization. In this method, pairs of histidine or cysteine mutations are introduced on the surface of target proteins, generating crystal lattice contacts or oligomeric assemblies upon coordination with metal. Metal-mediated synthetic symmetrization greatly expands the packing and oligomeric assembly possibilities of target proteins, thereby increasing the chances of growing diffraction-quality crystals. To demonstrate this method, we designed various T4 lysozyme (T4L) and maltose-binding protein (MBP) mutants and cocrystallized them with one of three metal ions: copper (Cu2+), nickel (Ni2+), or zinc (Zn2+). The approach resulted in 16 new crystal structures—eight for T4L and eight for MBP—displaying a variety of oligomeric assemblies and packing modes, representing in total 13 new and distinct crystal forms for these proteins. We discuss the potential utility of the method for crystallizing target proteins of unknown structure by engineering in pairs of histidine or cysteine residues. As an alternate strategy, we propose that the varied crystallization-prone forms of T4L or MBP engineered in this work could be used as crystallization chaperones, by fusing them genetically to target proteins of interest.
机译:结合与工程金属结合位点的方法合成对称的概念,我们已经开发出一种新的结晶方法称为金属催化合成对称。在该方法中,组氨酸或半胱氨酸突变对引入靶蛋白的表面上,产生晶格接触或在与金属配位的寡聚装配。金属介导的合成对称化极大地扩展的靶蛋白的填料和低聚装配的可能性,从而增加生长衍射品质晶体的机会。为了证明这种方法,我们设计了各种T4溶菌酶(T4L)和麦芽糖结合蛋白(MBP)的突变体,并用三个金属离子之一共结晶它们:铜(Cu2 +的),镍(镍离子),或锌(Zn2 +的)。该方法导致了16层新的晶体结构八个用于T4L和八个为MBP-显示各种低聚组件和包装模式中,在总共13种新的和不同的晶体形式为这些蛋白质代表。我们讨论的方法的潜在应用程序,用于对组氨酸或半胱氨酸残基被工程结晶未知结构的靶蛋白。作为替代策略,我们建议,在这项工作中工程改造的T4L或MBP的变化结晶倾向的形式可以作为结晶伴侣,通过遗传融合他们感兴趣的靶蛋白。

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