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色氨酸120与生物素形成的亚基间接触对于链霉亲和素的强生物素结合及生物素诱导的更紧密亚基缔合均至关重要。

Intersubunit contacts made by tryptophan 120 with biotin are essential for both strong biotin binding and biotin-induced tighter subunit association of streptavidin.

作者信息

Sano T, Cantor C R

机构信息

Center for Advanced Biotechnology, Boston University, MA 02215, USA.

出版信息

Proc Natl Acad Sci U S A. 1995 Apr 11;92(8):3180-4. doi: 10.1073/pnas.92.8.3180.

Abstract

In natural streptavidin, tryptophan 120 of each subunit makes contacts with the biotin bound by an adjacent subunit through the dimer-dimer interface. To understand quantitatively the role of tryptophan 120 and its intersubunit communication in the properties of streptavidin, a streptavidin mutant in which tryptophan 120 is converted to phenylalanine was produced and characterized. The streptavidin mutant forms a tetrameric molecule and binds one biotin per subunit, as does natural streptavidin, indicating that the mutation of tryptophan 120 to phenylalanine has no significant effect on the basic properties of streptavidin. However, its biotin-binding affinity was reduced substantially, to approximately 10(8) M-1, indicating that the contact made by tryptophan 120 to biotin has a considerable contribution to the extremely tight biotin binding by streptavidin. The mutant retained bound biotin over a wide pH range or with the addition of urea up to 6 M at neutral pH. However, bound biotin was efficiently released by the addition of excess free biotin due, presumably, to exchange reactions. Electrophoretic analysis revealed that the intersubunit contact made by tryptophan 120 to biotin through the dimer-dimer interface is the major interaction responsible for the biotin-induced, tighter subunit association of streptavidin. In addition, the mutant has weaker subunit association than natural streptavidin even in the absence of biotin, indicating that tryptophan 120 also contributes to the subunit association of tetramers in the absence of biotin.

摘要

在天然抗生物素蛋白中,每个亚基的色氨酸120通过二聚体 - 二聚体界面与相邻亚基结合的生物素相互作用。为了定量了解色氨酸120及其亚基间通讯在抗生物素蛋白性质中的作用,制备并表征了一种色氨酸120被转化为苯丙氨酸的抗生物素蛋白突变体。该抗生物素蛋白突变体形成四聚体分子,并且每个亚基结合一个生物素,天然抗生物素蛋白也是如此,这表明色氨酸120突变为苯丙氨酸对抗生物素蛋白的基本性质没有显著影响。然而,其生物素结合亲和力大幅降低至约10⁸ M⁻¹,这表明色氨酸120与生物素的相互作用对抗生物素蛋白与生物素的极强紧密结合有相当大的贡献。该突变体在很宽的pH范围内或在中性pH下添加高达6 M的尿素时仍保留结合的生物素。然而,由于可能的交换反应,添加过量的游离生物素可有效释放结合的生物素。电泳分析表明,色氨酸120通过二聚体 - 二聚体界面与生物素的亚基间相互作用是导致生物素诱导的抗生物素蛋白亚基结合更紧密的主要相互作用。此外,即使在没有生物素的情况下,该突变体的亚基结合也比天然抗生物素蛋白弱,这表明色氨酸120在没有生物素的情况下也有助于四聚体的亚基结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/626d/42129/860b678c7242/pnas01492-0115-a.jpg

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