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Design of beta-Hairpin Peptides for Modulation of Cell Adhesion by beta-Turn Constraint

机译:β-发夹肽的设计,用于通过β-Turn约束调节细胞粘附

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摘要

The CD2-CD58 interaction in immune regulation and disease pathology has provided new targets for developing potential immunosuppressive agents. In the present study, we report the introduction of constraints to generate beta-hairpin structures from the strand sequences of CD2 protein. The beta-hairpin structures were induced in the designed peptides by introducing Pro-Gly sequences in the peptides. Results from NMR and MD simulation indicated that the peptides exhibited beta-turn structure at the X-Pro-Gly-Y sequence and formed the beta-hairpin structure in solution. The ability of these peptides to inhibit cell adhesion was evaluated by two cell adhesion assays. Among the peptides studied (1-4) (P1-P4), peptides 2-4 were able to inhibit cell adhesion between Jurkat cells and SRBC nearly 50% at 180 mu M, and 80% inhibition between Jurkat cells and Caco-2 cells was seen at 90 mu M. Peptide 1 did not show significant inhibition activity compared to control.
机译:CD2-CD58在免疫调节和疾病病理学中的相互作用为开发潜在的免疫抑制剂提供了新的靶标。在本研究中,我们报道了从CD2蛋白的链序列产生β-发夹结构的限制条件的引入。通过在肽中引入Pro-Gly序列,在设计的肽中诱导β-发夹结构。 NMR和MD模拟的结果表明,这些肽在X-Pro-Gly-Y序列上呈现出β-转角结构,并在溶液中形成了β-发夹结构。这些肽抑制细胞粘附的能力通过两种细胞粘附测定法评估。在研究的肽(1-4)(P1-P4)中,肽2-4能够在180μM时抑制Jurkat细胞和SRBC之间的细胞黏附近50%,而抑制Jurkat细胞和Caco-2细胞之间的80%在90μM处观察到肽。与对照相比,肽1没有显示出明显的抑制活性。

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