Jining Liu, Makagiansar Irwan, Yusuf-Makagiansar Helena, Chow Vincent T K, Siahaan Teruna J, Jois Seetharama D S
Department of Pharmacy, National University of Singapore, Singapore.
Eur J Biochem. 2004 Jul;271(14):2873-86. doi: 10.1111/j.1432-1033.2004.04198.x.
The interaction between cell-adhesion molecules CD2 and CD58 is critical for an immune response. Modulation or inhibition of these interactions has been shown to be therapeutically useful. Synthetic 12-mer linear and cyclic peptides, and cyclic hexapeptides based on rat CD2 protein, were designed to modulate CD2-CD58 interaction. The synthetic peptides effectively blocked the interaction between CD2-CD58 proteins as demonstrated by antibody binding, E-rosetting and heterotypic adhesion assays. NMR and molecular modeling studies indicated that the synthetic cyclic peptides exhibit beta-turn structure in solution and closely mimic the beta-turn structure of the surface epitopes of the CD2 protein. Docking studies of CD2 peptides and CD58 protein revealed the possible binding sites of the cyclic peptides on CD58 protein. The designed cyclic peptides with beta-turn structure have the ability to modulate the CD2-CD58 interaction.
细胞黏附分子CD2与CD58之间的相互作用对免疫反应至关重要。已证明对这些相互作用的调节或抑制具有治疗作用。基于大鼠CD2蛋白设计了合成的12聚体线性和环状肽以及环状六肽,以调节CD2-CD58相互作用。如抗体结合、E-玫瑰花结形成和异型黏附试验所示,合成肽有效阻断了CD2-CD58蛋白之间的相互作用。核磁共振(NMR)和分子建模研究表明,合成环状肽在溶液中呈现β-转角结构,并紧密模拟CD2蛋白表面表位的β-转角结构。CD2肽与CD58蛋白的对接研究揭示了环状肽在CD58蛋白上可能的结合位点。设计的具有β-转角结构的环状肽具有调节CD2-CD58相互作用的能力。