首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Isolation of peptides that inhibit binding of basic fibroblast growth factor to its receptor from a random phage-epitope library.
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Isolation of peptides that inhibit binding of basic fibroblast growth factor to its receptor from a random phage-epitope library.

机译:从随机噬菌体表位文库中分离抑制碱性成纤维细胞生长因子与其受体结合的肽。

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摘要

Basic fibroblast growth factor (bFGF) is known to bind to its cell-surface receptors with high affinity and in a heparin-dependent manner. In an attempt to predict the receptor recognition site on bFGF we screened phage-epitope libraries with monoclonal antibodies DG2 and DE6, which inhibit bFGF binding to its receptor. On the affinity-isolated phages, we identified several peptide sequences as the putative antibody-binding epitopes on bFGF. The identified library epitopes shared the consensus sequence Pro-(Pro/Ser)-Gly-His-(Tyr/Phe)-Lys, corresponding to two continuous protein sequences of bFGF: Pro-Pro-Gly-His-Phe-Lys and Arg-Thr-Gly-Gln-Tyr-Lys at amino acids 13-18 and 120-125 of bFGF, respectively. Synthetic peptides of the corresponding phage epitopes or of the above bFGF sequences specifically inhibited binding of the antibodies to bFGF, blocked binding of bFGF to its high-affinity receptor, and inhibited basal and bFGF-induced proliferation of vascular endothelial cells at submicromolar peptide concentrations. The potent inhibition of bFGF binding and biological activity by peptides recognized by the antibodies suggests that these sequences are functionally involved in receptor binding and may constitute part of the receptor-binding determinants on bFGF.
机译:已知碱性成纤维细胞生长因子(bFGF)以高亲和力并以肝素依赖性方式结合其细胞表面受体。为了尝试预测bFGF上的受体识别位点,我们用抑制bFGF与其受体结合的单克隆抗体DG2和DE6筛选了噬菌体表位文库。在亲和力分离的噬菌体上,我们鉴定了几种肽序列作为bFGF的推定抗体结合表位。鉴定出的文库表位共有共有序列Pro-(Pro / Ser)-Gly-His-(Tyr / Phe)-Lys,对应于bFGF的两个连续蛋白质序列:Pro-Pro-Gly-His-Phe-Lys和Arg -Thr-Gly-Gln-Tyr-Lys分别位于bFGF的氨基酸13-18和120-125。相应的噬菌体表位或上述bFGF序列的合成肽特异性抑制抗体与bFGF的结合,阻断bFGF与其高亲和力受体的结合,并在亚微摩尔肽浓度下抑制基础和bFGF诱导的血管内皮细胞增殖。抗体识别的肽对bFGF结合和生物学活性的有效抑制表明,这些序列在功能上参与受体结合,并且可能构成bFGF受体结合决定簇的一部分。

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