首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Thermodynamic and structural consequences of flexible loop deletion by circular permutation in the streptavidin-biotin system.
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Thermodynamic and structural consequences of flexible loop deletion by circular permutation in the streptavidin-biotin system.

机译:在链霉亲和素-生物素系统中通过环状排列进行柔性环缺失的热力学和结构后果。

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摘要

A circularly permuted streptavidin (CP51/46) has been designed to remove the flexible polypeptide loop that undergoes an open to closed conformational change when biotin is bound. The original termini have been joined by a tetrapeptide linker, and four loop residues have been removed, resulting in the creation of new N- and C-termini. Isothermal titration calorimetric studies show that the association constant has been reduced approximately six orders of magnitude below that of wild-type streptavidin to 10(7) M(-1). The deltaH degrees of biotin association for CP51/46 is reduced by 11.1 kcal/mol. Crystal structures of CP51/46 and its biotin complex show no significant alterations in the binding site upon removal of the loop. A hydrogen bond between Ser45 and Ser52 found in the absence of biotin is broken in the closed conformation as the side-chain hydroxyl of Ser45 moves to hydrogen bond to a ureido nitrogen of biotin. This is true in both the wild-type and CP51/46 forms of the protein, and the hydrogen bonding interaction might thus help nucleate closure of the loop. The reduced entropic cost of binding biotin to CP51/46 is consistent with the removal of this loop and a reduction in entropic costs associated with loop closure and immobilization. The reduced enthalpic contribution to the free energy of binding is not readily explainable in terms of the molecular structure, as the binding contacts are nearly entirely conserved, and only small differences in solvent accessible surfaces are observed relative to wild-type streptavidin.
机译:已设计出圆形排列的抗生蛋白链菌素(CP51 / 46),以去除与生物素结合时经历从开放到封闭构象变化的柔性多肽环。原始末端已被四肽接头连接,并且四个环残基已被去除,从而产生了新的N和C末端。等温滴定量热法研究表明,缔合常数已比野生型链霉亲和素降低了约6个数量级,降至10(7)M(-1)。 CP51 / 46的生物素缔合的ΔH度降低11.1 kcal / mol。 CP51 / 46的晶体结构及其生物素复合物在去除环后未显示结合位点的显着变化。在不存在生物素的情况下,Ser45和Ser52之间的氢键在闭合构象中断裂,这是因为Ser45的侧链羟基与生物素的脲基氮原子形成氢键。该蛋白的野生型和CP51 / 46形式均是如此,因此氢键相互作用可能有助于成环的成核闭合。使生物素与CP51 / 46结合的熵成本降低与该环的去除以及与环闭合和固定相关的熵成本的降低相一致。减少的焓对结合自由能的影响在分子结构方面不容易解释,因为结合接触几乎完全保守,并且相对于野生型链霉亲和素,在溶剂可及表面上仅观察到很小的差异。

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