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Basis for selection of improved carbohydrate-binding single-chain antibodies from synthetic gene libraries.

机译:从合成基因文库中选择改良的结合碳水化合物的单链抗体的基础。

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摘要

A technique is described for the simultaneous and controlled random mutation of all three heavy or light chain complementarity-determining regions (CDRs) in a single-chain Fv specific for the O polysaccharide of Salmonella serogroup B. Sense oligonucleotides were synthesized such that the central bases encoding a CDR were randomized by equimolar spiking with A, G, C, and T at a level of 10% while the antisense strands contained inosine in the spiked regions. Phage display of libraries assembled from the spiked oligonucleotides by a synthetic ligase chain reaction demonstrated a bias for selection of mutants that formed dimers and higher oligomers. Kinetic analyses showed that oligomerization increased association rates in addition to slowing dissociation rates. In combination with some contribution from reduced steric clashes with residues in heavy-chain CDR2, oligomerization resulted in functional affinities that were much higher than that of the monomeric form of the wild-type single-chain Fv.
机译:描述了一种技术,用于同时对沙门氏菌血清群B的O多糖特异的单链Fv中的所有三个重链或轻链互补决定区(CDR)进行随机受控突变。合成了有义寡核苷酸,使得中央碱基通过在A,G,C和T等摩尔加标10%的水平,而反义链的尖峰区域中含有肌苷,可以随机化编码CDR的CDR。通过合成的连接酶链反应从掺入的寡核苷酸组装的文库的噬菌体展示显示出选择形成二聚体和更高寡聚体的突变体的偏见。动力学分析表明,低聚反应除了降低解离速率外,还增加了缔合速率。与减少的与重链CDR2中的残基发生空间冲突的贡献相结合,寡聚导致的功能亲和力远高于野生型单链Fv的单体形式。

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