首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Reduced steric hindrance and optimized spatial arrangement of carbohydrate ligands in imprinted monolayers for enhanced protein binding
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Reduced steric hindrance and optimized spatial arrangement of carbohydrate ligands in imprinted monolayers for enhanced protein binding

机译:减少空间位阻并优化印迹单层中碳水化合物配体的空间排列,以增强蛋白质结合

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摘要

Imprinted monolayers provide several advantages over bulk imprinting methods. This is especially important for large templates such as proteins. Concanavalin A (Con A)-imprinted binary monolayers consisting of glycolipids with oligo(ethylene glycol) (OEG) spacers and zwitterionic phospholipids (DPPC) were constructed and investigated. The shorter phosphorylcholine (PC) headgroups with an almost flat-on orientation in the binary monolayers gave rise to reduced steric hindrance favorable to the accommodation of Con A with greater ease and facilitated the access of the OEG-linked mannose moieties for enhanced protein binding. Further enhanced binding resulted from optimized spatial rearrangement of the glycolipids at the air-water interface directed by Con A in the subphase to create bivalent binding sites and to minimize steric crowding of neighboring mannose ligands. The combination of the exposed carbohydrate ligands from biologically inert surfaces and the optimized ligand arrangement is the most reasonable solution to enhancement of protein affinity. The bivalent carbohydrate binding sites protruding from the imprinted monolayers were created to be complementary to the Con A binding pockets. This strategy generates tailor-made surfaces with enhanced protein binding and opens the possibility of controlled assembly of intellectual biomaterials and preparation of biosensors.
机译:压印的单分子层与本体压印方法相比具有许多优势。这对于大型模板(例如蛋白质)尤其重要。构建并研究了伴刀豆球蛋白A(Con A)印记的二元单层,该二元单层由具有低聚(乙二醇)(OEG)间隔基的糖脂和两性离子磷脂(DPPC)组成。在二元单分子层中具有几乎平坦的取向的较短的磷酸胆碱(PC)头基可降低空间位阻,有利于更轻松地容纳Con A,并促进OEG连接的甘露糖部分的进入,从而增强蛋白质结合。结合进一步增强,这是由于亚相中Con A指导的空气-水界面处糖脂的优化空间重排产生了二价结合位点,并使相邻甘露糖配体的空间拥挤最小化。来自生物学惰性表面的暴露的碳水化合物配体与优化的配体排列相结合是增强蛋白质亲和力的最合理解决方案。从印迹单层突出的二价碳水化合物结合位点被创建为与Con A结合口袋互补。这种策略可生成具有增强的蛋白质结合能力的定制表面,并为智能生物材料的受控组装和生物传感器的制备提供了可能性。

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