首页> 外文期刊>Biochemistry >BINDING TO PROTEIN TARGETS OF PEPTIDIC LEADS DISCOVERED BY PHAGE DISPLAY - CRYSTAL STRUCTURES OF STREPTAVIDIN-BOUND LINEAR AND CYCLIC PEPTIDE LIGANDS CONTAINING THE HPQ SEQUENCE
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BINDING TO PROTEIN TARGETS OF PEPTIDIC LEADS DISCOVERED BY PHAGE DISPLAY - CRYSTAL STRUCTURES OF STREPTAVIDIN-BOUND LINEAR AND CYCLIC PEPTIDE LIGANDS CONTAINING THE HPQ SEQUENCE

机译:结合通过噬菌体展示发现的肽的蛋白质目标-含有HPQ序列的链霉亲和素结合的线性和环状肽配体的晶体结构

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摘要

The streptavidin-bound crystal structures of two disulfide-bridged cyclic peptides (cyclo-Ac-[CHPQGPPC]-NH2 and cyclo-Ac-[CHPQFC]-NH2) and of a linear peptide (FSHPQNT) were determined, as well as the structure of apostreptavidin (streptavidin-sulfate). Both the linear and disulfide-bridged cyclic peptides studied share a common HPQ conformation and make common interactions with streptavidin, although significant differences in structures and interactions occur for flanking residues among the complexes. The conformation of the linear peptide in the crystal structure of streptavidin-FSHPQNT was found to differ from that in the same complex published [Weber, P. C., Pantoliano, M. W., & Thompson, L. D. (1992) Biochemistry 31, 9350-9354]. In the present investigation, the HPQNT portion of the ligand is well-defined with some density defining the Phe, whereas in the investigation of Weber et al. only the HPQ segment of the bound peptide could be interpreted. Both bound cyclic peptides adopt a beta-turn involving an H-bond between the His main chain carbonyl and the main chain amide NH of the i+3 residue. In the streptavidin-bound cyclo-Ac-[CHPQFC]-NH2 structure, there is an additional H-bond, indicative of alpha-helix, between the main chain His carbonyl and the main chain C-terminal Cys amide NH group. Binding interactions for both cyclic and linear peptides include direct H-bonds, H-bonds mediated by tightly bound water molecules, and hydrophobic interactions. The above structures and that of streptavidin-biotin in the literature are compared and discussed in the context of structure-based ligand design.
机译:确定了两个二硫键桥接的环肽(环-Ac- [CHPQGPPC] -NH2和环-Ac- [CHPQFC] -NH2)和线性肽(FSHPQNT)的抗生蛋白链菌素结合的晶体结构,以及该结构apostreptavidin(硫酸链霉亲和素)。线性和二硫键桥接的环状肽都具有相同的HPQ构象,并与链霉亲和素具有共同的相互作用,尽管复合物中侧翼残基的结构和相互作用存在显着差异。发现链霉抗生物素蛋白-FSHPQNT的晶体结构中的线性肽的构象与公开的同一复合物中的构象不同[Weber,P.C.,Pantoliano,M.W。,&Thompson,L.D。(1992)Biochemistry 31,9350-9354]。在目前的研究中,配体的HPQNT部分是明确定义的,并具有一定的密度,定义了Phe,而在Weber等人的研究中。仅结合肽的HPQ区段可以被解释。两种结合的环肽都采用β-转角,该转角涉及His主链羰基和i + 3残基的主链酰胺NH之间的H键。在链霉亲和素结合的环-Ac- [CHPQFC] -NH2结构中,在主链His羰基和主链C端Cys酰胺NH基之间存在一个额外的H键,表示α-螺旋。环状和线性肽的结合相互作用包括直接的H键,紧密结合的水分子介导的H键以及疏水性相互作用。在基于结构的配体设计的背景下,比较并讨论了上述结构和链霉亲和素-生物素的结构。

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