首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Site-directed mutagenesis studies of the high-affinity streptavidin-biotin complex: contributions of tryptophan residues 79 108 and 120.
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Site-directed mutagenesis studies of the high-affinity streptavidin-biotin complex: contributions of tryptophan residues 79 108 and 120.

机译:高亲和力链霉亲和素-生物素复合物的定点诱变研究:色氨酸残基79、108和120的贡献。

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摘要

We report the functional characterization of site-directed biotin binding-site mutants of recombinant core streptavidin. The mutagenesis studies were aimed at characterizing the contributions of Trp residues known to contact biotin that have been postulated to control the exceptional binding affinity observed in this system. The functional properties of single site-directed mutants replacing Trp residues with Phe or Ala at positions 79, 108, and 120 were investigated by quantitating the EC50 binding parameters of these mutants to biotin and 2-iminobiotin in an ELISA format. The biotin EC50 for all mutants was the same as wild-type streptavidin, demonstrating that their delta Ka values relative to wild type were < 10(6). The conservative W79F and W108F mutants displayed only a 2- to 3-fold increase in EC50 for 2-iminobiotin, corresponding to an estimated delta Ka < 10, while the W120F mutant displayed a much greater alteration in 2-iminobiotin EC50, corresponding to an estimated delta Ka of 10(2). These delta Ka values are likely to reflect similar changes for biotin. The 2-iminobiotin EC50 values for the Ala mutants fell outside the accessible concentration range of the ELISA assay, demonstrating that these mutations lowered the Ka by a factor of 10(4) to 10(6). Direct estimation of biotin Ka values for W79A, W120A, and W120F in an ultrafiltration binding assay yielded Ka values of 4.3 x 10(7) M-1, 8.6 x 10(6) M-1, and > 5 x 10(9) M-1, respectively, in excellent agreement with the ELISA estimates of delta Ka with 2-iminobiotin as a reporter ligand. The results of these preliminary functional studies suggest that these aromatic side chains contribute significantly to the streptavidin-biotin binding free energy.
机译:我们报告了重组核心链霉亲和素的定向生物素结合位点突变体的功能表征。诱变研究旨在表征已知与生物素接触的Trp残基的贡献,这些残基被假定为控制该系统中观察到的异常结合亲和力。通过以ELISA形式量化这些突变体与生物素和2-亚氨基生物素的EC50结合参数,研究了在79、108和120位用Phe或Ala取代Trp残基的单点定点突变体的功能特性。所有突变体的生物素EC50与野生型链霉亲和素相同,表明相对于野生型,其δKa值小于10(6)。保守的W79F和W108F突变体显示2-亚氨基生物素EC50仅增加2至3倍,对应于估计的del Ka <10,而W120F突变体显示2-亚氨基生物素EC50的变化要大得多,对应于估计的增量Ka为10(2)。这些ΔKa值可能反映了生物素的类似变化。 Ala突变体的2-iminobiotin EC50值超出了ELISA分析的可访问浓度范围,表明这些突变将Ka降低了10(4)到10(6)。在超滤结合试验中直接估算W79A,W120A和W120F的生物素Ka值可得出Ka值为4.3 x 10(7)M-1、8.6 x 10(6)M-1和> 5 x 10(9) M-1分别与2-亚氨基生物素作为报告配体的Delta Ka的ELISA估计值非常吻合。这些初步功能研究的结果表明,这些芳香族侧链显着有助于链霉亲和素-生物素结合的自由能。

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