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具有亚基间交联的链霉亲和素稳定性增强。

Streptavidins with intersubunit crosslinks have enhanced stability.

作者信息

Reznik G O, Vajda S, Smith C L, Cantor C R, Sano T

机构信息

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

出版信息

Nat Biotechnol. 1996 Aug;14(8):1007-11. doi: 10.1038/nbt0896-1007.

Abstract

Natural tetrameric streptavidin has two subunit interfaces; one is a strong interface between subunits in a tightly associated dimer, and the other is a weak interface between a pair of such dimers (dimer-dimer interface). To test whether strengthening the weak dimer-dimer interface could provide streptavidin with additional structural stability, covalent crosslinks were introduced between adjacent subunits through the dimer-dimer interface. Specific crosslinking sites were designed by site-directed mutations of His-127 residues that are in close proximity in natural streptavidin. The first and second streptavidin constructs have a disulfide bond and an irreversible covalent bond, respectively, between two Cys-127 residues across the dimer-dimer interface. The third variant is a hybrid tetramer consisting of two different streptavidin species, one having lysine and the other aspartic acid at position 127, which are covalently crosslinked. All streptavidin constructs with intersubunit crosslinks showed higher biotin-binding ability than natural core streptavidin after heat treatment. All of these crosslinked streptavidins retained bound biotin more stably than natural core streptavidin in guanidine hydrochloride at very acidic pH. These results suggest that the introduction of covalent bonds across the dimer-dimer interface enhances the overall stability of streptavidin.

摘要

天然四聚体抗生物素蛋白有两个亚基界面;一个是紧密结合的二聚体中亚基之间的强界面,另一个是一对这样的二聚体之间的弱界面(二聚体 - 二聚体界面)。为了测试加强弱的二聚体 - 二聚体界面是否能赋予抗生物素蛋白额外的结构稳定性,通过二聚体 - 二聚体界面在相邻亚基之间引入了共价交联。通过对天然抗生物素蛋白中紧密相邻的His - 127残基进行定点突变来设计特定的交联位点。第一种和第二种抗生物素蛋白构建体分别在穿过二聚体 - 二聚体界面的两个Cys - 127残基之间有一个二硫键和一个不可逆共价键。第三种变体是由两种不同的抗生物素蛋白物种组成的杂合四聚体,一种在第127位有赖氨酸,另一种在该位置有天冬氨酸,它们通过共价交联。所有具有亚基间交联的抗生物素蛋白构建体在热处理后显示出比天然核心抗生物素蛋白更高的生物素结合能力。在非常酸性的pH值下,所有这些交联的抗生物素蛋白在盐酸胍中比天然核心抗生物素蛋白更稳定地保留结合的生物素。这些结果表明,通过二聚体 - 二聚体界面引入共价键增强了抗生物素蛋白的整体稳定性。

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