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A streptavidin mutant with altered ligand-binding specificity

机译:具有改变的配体结合特异性的链霉亲和素突变体

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摘要

The biotin-binding site of streptavidin was modified to alter its ligand-binding specificity. In natural streptavidin, the side chains of N23 and S27 make two of the three hydrogen bonds with the ureido oxygen of biotin. These two residues were mutated to severely weaken biotin binding while attempting to maintain the affinity for two biotin analogs, 2-iminobiotin and diaminobiotin. Redesigning of the biotin-binding site used the difference in local electrostatic charge distribution between biotin and these biotin analogs. Free energy calculations predicted that the introduction of a negative charge at the position of S27 plus the mutation N23A should disrupt two of the three hydrogen bonds between natural streptavidin and the ureido oxygen of biotin. In contrast, the imino hydrogen of 2-iminobiotin should form a hydrogen bond with the side chain of an acidic amino acid at position 27. This should reduce the biotin-binding affinity by approximately eight orders of magnitude, while leaving the affinities for these biotin analogs virtually unaffected. In good agreement with these predictions, a streptavidin mutant with the N23A and S27D substitutions binds 2-iminobiotin with an affinity (K_a) of 1 x 10~6 M~(-1), two orders of magnitude higher than that for biotin (1 x 10~4 M~(-1)). In contrast, the binding affinity of this streptavidin mutant for diaminobiotin (2.7 x 10~4 M~(-1)) was lower than predicted (2.9 x 10~5 M~(-1)), suggesting the position of the diaminobiotin in the biotin-binding site was not accurately determined by modeling.
机译:链霉亲和素的生物素结合位点被修饰以改变其配体结合特异性。在天然链霉亲和素中,N23和S27的侧链与生物素的脲基氧形成三个氢键中的两个。对这两个残基进行突变以严重削弱生物素的结合,同时试图维持对两种生物素类似物2-亚氨基生物素和二氨基生物素的亲和力。重新设计生物素结合位点使用了生物素与这些生物素类似物之间的局部静电荷分布差异。自由能计算预测,在S27位置加上突变N23A引入负电荷会破坏天然链霉亲和素与生物素的脲基氧之间的三个氢键中的两个。相反,2-亚氨基生物素的亚氨基氢应与酸性氨基酸的侧链在位置27形成氢键。这应使生物素结合亲和力降低约8个数量级,同时保留这些生物素的亲和力类似物几乎不受影响。与这些预测很好地吻合,具有N23A和S27D取代的链霉亲和素突变体以1 x 10〜6 M〜(-1)的亲和力(K_a)结合2-亚氨基生物素,比生物素的亲和力高两个数量级(1 x 10〜4 M〜(-1))。相反,该抗生蛋白链菌素突变体对二氨基生物素的结合亲和力(2.7 x 10〜4 M〜(-1))低于预期值(2.9 x 10〜5 M〜(-1)),表明二氨基生物素在体内的位置。通过建模无法准确确定生物素结合位点。

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