Kish William S, Sachi Hiroyuki, Naik Amith D, Roach Matthew K, Bobay Benjamin G, Blackburn Robert K, Menegatti Stefano, Carbonell Ruben G
Department of Chemical and Biomolecular Engineering, North Carolina State University, Raleigh, NC 27695, USA.
Research and Development Group, Fuji Silysia Chemical Ltd., Aza Kihara, Oaza Hichiya, Hyuga-shi, Miyazaki-ken, Japan.
J Chromatogr A. 2017 Jun 2;1500:105-120. doi: 10.1016/j.chroma.2017.04.019. Epub 2017 Apr 12.
This work presents the selection and characterization of erythropoietin (EPO)-binding cyclic peptide ligands. The sequences were selected by screening a focused library of cyclic depsipeptides cyclo[(N-Ac)Dap(A)-X-X-AE], whose structure and amino acid compositions were tailored to mimic the EPO receptor. The sequences identified through library screening were synthesized on chromatographic resin and characterized via binding-and-elution studies against EPO to select a pool of candidate ligands. Sequences with higher hydrophobicity consistently showed stronger binding to EPO, with the exception of FSLLSH, which was noted for its lower hydrophobicity and high EPO binding. Mutagenesis studies performed on FSLLSH with natural and non-natural amino acid substitutions led to the identification of critical EPO-binding determinants, and the discovery of new peptide ligands. In particular, histidine-scanning mutagenesis performed on three lead sequences yielded the discovery of variants whose EPO-binding is more pH-sensitive, which facilitates EPO recovery. Selected ligands were studied to correlate the elution yield to the salinity of the binding buffer and the elution pH. Elution yields were consistently higher when EPO binding was performed at low ionic strength. The crystal structures of lead cyclic peptides were docked in silico against EPO to estimate the binding affinity in solution. Isotherm adsorption studies performed on FSLLSH indicated that the cyclic version of the ligand (K=0.46μM) has a higher affinity for EPO than its corresponding linear variant (K=1.44μM). Collectively, these studies set the stage for use of the cyclic peptide ligands as EPO purification and detection tools.
这项工作展示了促红细胞生成素(EPO)结合环肽配体的筛选与特性研究。通过筛选聚焦的环缩肽环[(N - 乙酰基)Dap(A)-X - X - AE]文库来选择序列,其结构和氨基酸组成经过调整以模拟EPO受体。通过文库筛选鉴定出的序列在色谱树脂上合成,并通过与EPO的结合 - 洗脱研究进行表征,以选择一组候选配体。除了FSLLSH因其较低的疏水性和高EPO结合能力而被注意到外,疏水性较高的序列始终显示出与EPO更强的结合。对FSLLSH进行天然和非天然氨基酸取代的诱变研究,导致鉴定出关键的EPO结合决定因素,并发现了新的肽配体。特别是,对三个先导序列进行的组氨酸扫描诱变产生了EPO结合对pH更敏感的变体,这有利于EPO的回收。对选定的配体进行研究,以关联洗脱产率与结合缓冲液的盐度和洗脱pH。当在低离子强度下进行EPO结合时,洗脱产率始终较高。将先导环肽的晶体结构在计算机上与EPO对接,以估计溶液中的结合亲和力。对FSLLSH进行的等温吸附研究表明,配体的环化形式(K = 0.46μM)对EPO的亲和力高于其相应的线性变体(K = 1.44μM)。总体而言,这些研究为将环肽配体用作EPO纯化和检测工具奠定了基础。