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Functional glycan-free adhesion domain of human cell surface receptor CD58: design production and NMR studies.

机译:人细胞表面受体CD58的无功能性无聚糖粘附域:设计生产和NMR研究。

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摘要

A general strategy is presented here for producing glycan-free forms of glycoproteins without loss of function by employing apolar-to-polar mutations of surface residues in functionally irrelevant epitopes. The success of this structure-based approach was demonstrated through the expression in Escherichia coli of a soluble 11 kDa adhesion domain extracted from the heavily glycosylated 55 kDa human CD58 ectodomain. The solution structure was subsequently determined and binding to its counter-receptor CD2 studied by NMR. This mutant adhesion domain is functional as determined by several experimental methods, and the size of its binding site has been probed by chemical shift perturbations in NMR titration experiments. The new structural information supports a 'hand-shake' model of CD2-CD58 interaction involving the GFCC'C" faces of both CD2 and CD58 adhesion domains. The region responsible for binding specificity is most likely localized on the C, C' and C" strands and the C-C' and C'-C" loops on CD58.
机译:本文提出了一种通用策略,可通过在功能上不相关的表位中采用表面残基的无极性突变来生产无聚糖形式的糖蛋白,而不会丧失功能。通过从重糖基化的55 kDa人CD58胞外域提取的可溶性11 kDa粘附域在大肠杆菌中的表达,证明了这种基于结构的方法的成功。随后确定溶液结构,并通过NMR研究与其反受体CD2的结合。该突变的粘附域是通过几种实验方法确定的,并且其结合位点的大小已通过NMR滴定实验中的化学位移扰动来探测。新的结构信息支持CD2-CD58相互作用的“握手”模型,涉及CD2和CD58粘附域的GFCC'C“面。负责结合特异性的区域很可能位于C,C'和C CD58上的“链和CC'和C'-C”环。

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