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葫芦脲 B 以高亲和力结合非末端二肽位点并诱导 II 型 β-转角。

Cucurbit[8]uril Binds Nonterminal Dipeptide Sites with High Affinity and Induces a Type II β-Turn.

机构信息

Department of Chemistry, Trinity University, 1 Trinity Place, San Antonio, Texas 78212, United States.

Center for Multidimensional Carbon Materials (CMCM), Institute for Basic Science (IBS) and Department of Chemistry, Ulsan National Institute of Science and Technology (UNIST), Ulsan 44919, Republic of Korea.

出版信息

J Am Chem Soc. 2024 Mar 20;146(11):7649-7657. doi: 10.1021/jacs.3c14045. Epub 2024 Feb 13.

Abstract

In an effort to target polypeptides at nonterminal sites, we screened the binding of the synthetic receptor cucurbit[8]uril (Q8) to a small library of tetrapeptides, each containing a nonterminal dipeptide binding site. The resulting leads were characterized in detail using a combination of isothermal titration calorimetry, H NMR spectroscopy, electrospray ionization time-of-flight mass spectrometry (ESI-TOF-MS), and X-ray crystallography. The equilibrium dissociation constant values determined for the binding of Q8 to nonterminal dipeptide sites Lys-Phe (KF) and Phe-Lys (FK) were 60 and 86 nm, respectively. These are to the best of our knowledge the highest affinities reported to date for any synthetic receptor targeting a nonterminal site on an unmodified peptide. A 0.79 Å resolution crystal structure was obtained for the complex of Q8 with the peptide Gly-Gly-Leu-Tyr-Gly-Gly-Gly (GGLYGGG) and reveals structural details of the pair-inclusion motif. The molecular basis for recognition is established to be the inclusion of the side chains of Leu and Tyr residues, as well as an extensive network of hydrogen bonds between the peptide backbone, the carbonyl oxygens of Q8, and proximal water molecules. In addition, the crystal structure reveals that Q8 induces a type II β-turn. The sequence-selectivity, high affinity, reversibility, and detailed structural characterization of this system should facilitate the development of applications involving ligand-induced polypeptide folding.

摘要

为了将多肽靶向到非末端位点,我们筛选了合成受体瓜环(Q8)与一小段四肽文库的结合情况,每个文库都包含一个非末端二肽结合位点。使用等温滴定量热法、H NMR 光谱、电喷雾电离飞行时间质谱(ESI-TOF-MS)和 X 射线晶体学的组合,对所得先导物进行了详细表征。确定 Q8 与非末端二肽位点 Lys-Phe(KF)和 Phe-Lys(FK)结合的平衡解离常数分别为 60 和 86nm。据我们所知,这是迄今为止报道的针对未修饰肽非末端位点的任何合成受体的最高亲和力。获得了 Q8 与肽 Gly-Gly-Leu-Tyr-Gly-Gly-Gly(GGLYGGG)的复合物的 0.79Å分辨率晶体结构,并揭示了对夹模式的结构细节。识别的分子基础被确立为包含 Leu 和 Tyr 残基的侧链,以及肽骨架、Q8 的羰基氧和邻近水分子之间广泛的氢键网络。此外,晶体结构表明 Q8 诱导了 II 型β-转角。该系统的序列选择性、高亲和力、可逆性和详细的结构表征应该有助于涉及配体诱导多肽折叠的应用的发展。

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