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半合成组合抗体文库:多样性问题的化学解决方案。

Semisynthetic combinatorial antibody libraries: a chemical solution to the diversity problem.

作者信息

Barbas C F, Bain J D, Hoekstra D M, Lerner R A

机构信息

Department of Molecular Biology, Scripps Research Institute, La Jolla, CA 92037.

出版信息

Proc Natl Acad Sci U S A. 1992 May 15;89(10):4457-61. doi: 10.1073/pnas.89.10.4457.

Abstract

The properties of naiveté and large diversity are considered to be essential starting features for combinatorial antibody libraries that eschew immunization by evolution in vitro. We have prepared large libraries with such properties by using random oligonucleotide synthesis, which has the potential to create approximately 10(20) complementarity-determining regions for antibody heavy chains. When combined with light chains and expressed on phage surfaces, high-affinity antibodies could be selected from 5.0 x 10(7) Escherichia coli transformants. Remarkably, antibodies selected only for binding displayed both general structural features known to be important in nature's own antibodies and specific consensus sequences thought to be critical for interaction with the hapten against which the library was selected. Semisynthetic and ultimately totally synthetic combinatorial libraries when coupled with mutation and selection procedures should replace immunization for generation of reagent, therapeutic, and catalytic antibodies.

摘要

幼稚性和高度多样性的特性被认为是体外通过进化避免免疫的组合抗体文库的基本起始特征。我们通过使用随机寡核苷酸合成制备了具有此类特性的大型文库,这种方法有可能为抗体重链创造约10²⁰个互补决定区。当与轻链结合并在噬菌体表面表达时,可从5.0×10⁷个大肠杆菌转化体中筛选出高亲和力抗体。值得注意的是,仅通过结合筛选出的抗体既显示出自然界自身抗体中已知重要的一般结构特征,又显示出被认为对与筛选文库所针对的半抗原相互作用至关重要的特定共有序列。半合成以及最终完全合成的组合文库,当与突变和筛选程序结合时,应取代免疫法来产生试剂抗体、治疗性抗体和催化抗体。

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本文引用的文献

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Somatic generation of antibody diversity.抗体多样性的体细胞产生。
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