Design, synthesis and characterization of artificial phospholipids as model membrane receptors for specific binding of rabbit C-reactive protein

Qingzhong Zhou , Qiufeng Gao , Jing Tong , Yue Zhou , Jia Mao , Sen-fang Sui
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引用次数: 1

Abstract

C-reactive protein (CRP) is an acute phase reactive protein, which has been shown to specifically bind to phosphorylcholine (PC) and phosphorylethanoamine (PE) moieties in the presence of calcium. In order to investigate the effect of steric hindrance on the specific binding of CRP to membranes, we designed and synthesized six phospholipids, each containing a long-arm spacer of 3, 6 or 8 atoms between the head group and hydrophobic tail. By mixing synthesized lipids and natural lipids the ligand-containing monolayers were prepared, which have PC or PE groups protruding out of the membrane surface. To characterize of the synthesized phospholipids, the thickness of the lipid monolayers was measured by surface plasmon resonance (SPR) technique, the phase behavior of the lipid monolayer at air/water interface was studied by pressure–area analysis, and the specific binding of rabbit C-reactive protein to the synthesized lipid containing membranes was studied by imaging ellipsometry.

人造磷脂作为兔c反应蛋白特异性结合模型膜受体的设计、合成和表征
c -反应蛋白(CRP)是一种急性期反应蛋白,已被证明在钙存在下特异性结合磷胆碱(PC)和磷乙醇胺(PE)部分。为了研究空间位阻对CRP与膜特异性结合的影响,我们设计并合成了6种磷脂,每种磷脂在头基团和疏水尾部之间含有3、6或8个原子的长臂间隔。将合成脂质与天然脂质混合,制备出具有PC或PE基团的含配体单层膜。为了表征合成的磷脂,采用表面等离子体共振(SPR)技术测量了脂质单层膜的厚度,采用压力区分析研究了脂质单层膜在空气/水界面的相行为,并用成像椭偏法研究了兔c反应蛋白与合成的含脂膜的特异性结合。
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