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首页> 外文期刊>Bioconjugate Chemistry >Powerful Binders for the D-Dimer by Conjugation of the GPRP Peptide to Polypeptides from a Designed Set—Illustrating a General Route to New Binders for Proteins
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Powerful Binders for the D-Dimer by Conjugation of the GPRP Peptide to Polypeptides from a Designed Set—Illustrating a General Route to New Binders for Proteins

机译:通过将GPRP肽与设计组中的多肽结合而形成D-二聚体的强大结合剂-说明了通往蛋白质新结合剂的一般途径

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摘要

The synthetic tetrapeptide GPRP based on the amino-terminal GPR sequence of the fibrin α-chain binds the D-dimer protein with a dissociation constant K_D of 25 μM. The D-dimer protein, a well-known biomarker for thrombosis, contains two cross-linked D fragments from the fibrinogen protein formed upon degradation of the fibrin gel, the core component of blood clots. In order to develop a specific high-affinity binder for the D-dimer protein, GPRP was conjugated via an aliphatic spacer to each member of a set of sixteen polypeptides designed for the development of binder molecules for proteins in general. The binders were individually characterized and ranked using surface plasmon resonance (SPR) analysis. The dissociation constant of the complex formed from the D-dimer and 4-D15L8-GPRP labeled with fluorescein was determined by fluorescense titration and found to be 3 nM, an affinity 4 orders of magnitude higher than that of free GPRP. According to SPR analysis, binding was completely inhibited by free GPRP at mM concentrations and the polypeptide conjugate was therefore shown to bind specifically to the binding site of GPRP. Affinities were further enhanced by dimerization of the polypeptide conjugates via a bifunctional linker resulting in dissociation constants that were further decreased (affinities increased) by factors of 2-4. The results suggest an efficient route to specific binders for proteins based on short peptides with affinities that need only to be modest, thus shortening the time of binder development dramatically.
机译:基于纤维蛋白α链氨基端GPR序列的合成四肽GPRP以25μM的解离常数K_D结合D-二聚体蛋白。 D-二聚体蛋白是一种众所周知的血栓形成生物标志物,包含两个血纤蛋白原(血凝块的核心成分)降解后形成的来自纤维蛋白原蛋白的两个交联的D片段。为了开发D-二聚体蛋白的特异性高亲和力结合剂,GPRP通过脂族间隔基与通常设计用于开发蛋白质结合剂分子的一组十六种多肽的每个成员缀合。使用表面等离振子共振(SPR)分析对粘合剂进行单独表征和分级。由D-二聚体和荧光素标记的4-D15L8-GPRP形成的复合物的解离常数通过荧光滴定法测定,发现为3 nM,亲和力比游离GPRP高4个数量级。根据SPR分析,在mM浓度下,游离GPRP完全抑制结合,因此显示多肽缀合物特异性结合GPRP的结合位点。通过双功能接头使多肽缀合物二聚,亲和力进一步增强,导致解离常数进一步降低(亲和力)达2-4倍。结果表明,基于亲和力仅需适度的短肽,可以有效地获得针对蛋白质的特异性结合剂的途径,从而大大缩短了结合剂开发的时间。

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