首页> 外文期刊>Peptides: An International Journal >Heparin-mimetic sulfated peptides with modulated affinities for heparin-binding peptides and growth factors.
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Heparin-mimetic sulfated peptides with modulated affinities for heparin-binding peptides and growth factors.

机译:对肝素结合肽和生长因子具有调节亲和力的模拟肝素硫酸盐化肽。

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Heterogeneity in the composition and in the polydispersity of heparin has motivated the development of homogeneous heparin mimics, and peptides of appropriate sequence and chemical function have therefore recently emerged as potential replacements for heparin in selected applications. Here, we report the assessment of the binding affinities of multiple sulfated peptides (SPs) for a set of heparin-binding peptides (HBPs) and for vascular endothelial growth factor isoform 165 (VEGF165); these binding partners have application in the selective immobilization of proteins and in hydrogel formation through non-covalent interactions. Sulfated peptides were produced via solid-phase methods, and their affinity for the HBPs and VEGF165 was assessed via affinity liquid chromatography (ALC), surface plasmon resonance (SPR), and in selected cases, isothermal titration calorimetry (ITC). The shortest peptide, SP(a), showed the highest affinity binding of HBPs and VEGF165 in both ALC and SPR measurements, with slightexceptions. Of the investigated HBPs, a peptide based on the heparin-binding domain of human platelet factor 4 showed greatest binding affinities toward all of the SPs, consistent with its stronger binding to heparin. The affinity between SP(a) and PF4(ZIP) was indicated via SPR (K(D)=5.27 microM) and confirmed via ITC (K(D)=8.09 microM). The binding by SP(a) of both VEGF and HBPs suggests its use as a binding partner to multiple species, and the use of these interactions in assembly of materials. Given that the peptide sequences can be varied to control binding affinity and selectivity, opportunities are also suggested for the production of a wider array of matrices with selective binding and release properties useful for biomaterials applications.
机译:肝素的组成和多分散性的异质性促进了均质肝素模拟物的发展,因此,在某些应用中,具有适当序列和化学功能的肽已成为肝素的潜在替代品。在这里,我们报告了对多种硫酸化肽(SP)对一组肝素结合肽(HBPs)和对血管内皮生长因子同工型165(VEGF165)的结合亲和力的评估;这些结合伴侣可用于蛋白质的选择性固定和通过非共价相互作用形成水凝胶。硫酸化的肽是通过固相方法生产的,其对HBP和VEGF165的亲和力通过亲和液相色谱(ALC),表面等离振子共振(SPR)以及在某些情况下通过等温滴定量热(ITC)进行评估。最短的肽SP(a)在ALC和SPR测量中均显示出HBP和VEGF165的最高亲和力结合,但有少许例外。在研究的HBP中,基于人血小板因子4肝素结合域的肽对所有SP表现出最大的结合亲和力,与其对肝素的更强结合相一致。 SP(a)和PF4(ZIP)之间的亲和力通过SPR(K(D)= 5.27 microM)表示,并通过ITC(K(D)= 8.09 microM)确认。 SP(a)对VEGF和HBP的结合表明它可用作多种物种的结合伴侣,并在材料组装中利用这些相互作用。考虑到可以改变肽序列以控制结合亲和力和选择性,还提出了生产具有对生物材料应用有用的具有选择性结合和释放特性的更广泛基质的机会。

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