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首页> 外文期刊>Protein engineering design & selection: PEDS >Two-dimensional surface display of functional groups on a {beta}-helical antifreeze protein scaffold.
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Two-dimensional surface display of functional groups on a {beta}-helical antifreeze protein scaffold.

机译:β-螺旋抗冻蛋白支架上官能团的二维表面展示。

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摘要

We tested a disulfide-rich antifreeze protein as a potential scaffold for design or selection of proteins with the capability of binding periodically organized surfaces. The natural antifreeze protein is a beta-helix with a strikingly regular two-dimensional grid of threonine side chains on its ice-binding face. Amino acid substitutions were made on this face to replace blocks of native threonines with other amino acids spanning the range of beta-sheet propensities. The variants, displaying arrays of distinct functional groups, were studied by mass spectrometry, reversed-phase high performance liquid chromatography, thiol reactivity and circular dichroism and NMR spectroscopies to assess their structures and stabilities relative to wild type. The mutants are well expressed in bacteria, despite the potential for mis-folding inherent in these 84-residue proteins with 16 cysteines. We demonstrate that most of the mutants essentially retain the native fold. This disulfide bonded beta-helical scaffold, thermally stable and remarkably tolerant of amino acid substitutions, is therefore useful for design and engineering of macromolecules with the potential to bind various targeted ordered material surfaces.
机译:我们测试了富含二硫键的抗冻蛋白,作为设计或选择具有结合周期性组织表面能力的蛋白的潜在支架。天然的防冻蛋白是一种β螺旋,在其冰结合面上具有惊人的规则的二维苏氨酸侧链网格。在该表面上进行了氨基酸取代,以其他自然界苏氨酸的嵌段取代了其他跨越β-折叠倾向范围的氨基酸。通过质谱,反相高效液相色谱,硫醇反应性,圆二色性和NMR光谱研究了显示不同官能团阵列的变体,以评估其结构和相对于野生型的稳定性。尽管在这些具有16个半胱氨酸的84个残基蛋白中固有存在错误折叠的潜力,但突变体在细菌中表达良好。我们证明了大多数突变体基本上保留了天然折叠。该二硫键结合的β-螺旋支架,热稳定并且对氨基酸取代具有显着的耐受性,因此可用于设计和工程化具有结合各种目标有序材料表面的潜力的大分子。

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