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生物技术与鸡B细胞系DT40

Biotechnology and the chicken B cell line DT40.

作者信息

Bachl J, Caldwell R B, Buerstedde J-M

机构信息

GSF-National Research Center for Environment and Health, Institute for Molecular Radiobiology, Neuherberg-Munich, Germany.

出版信息

Cytogenet Genome Res. 2007;117(1-4):189-94. doi: 10.1159/000103179.

Abstract

Protein optimization is a major focus of the biotech and pharmaceutical industry. Various in vitro technologies have been developed to accelerate protein evolution and to achieve protein optimization of functional characteristics such as substrate specificity, enzymatic activity and thermostability. The chicken B cell line DT40 diversifies its immunoglobulin (Ig) gene by gene conversion and somatic hypermutation. This machinery can be directed to almost any gene inserted into the Ig locus. Enormously diverse protein libraries of any gene of interest can be quickly generated in DT40 by utilizing random shuffling of complex genetic domains (gene conversion) and by the introduction of novel non-templated genetic information (random mutagenesis). The unique characteristics of the chicken cell line DT40 make it a powerful in-cell diversification system to improve proteins of interest within living cells. One essential advantage of the DT40 protein optimization approach is the fact that variants are generated within an in-cell system thus allowing the direct screening for desired features in the context of intracellular networks. Utilizing specially designed selection strategies, such as the powerful fluorescent protein technology, enables the reliable identification of protein variants exhibiting the most desirable traits. Thus, DT40 is well positioned as a biotechnological tool to generate optimized proteins by applying a powerful combination of gene specific hypermutation, gene conversion and mutant selection.

摘要

蛋白质优化是生物技术和制药行业的主要关注点。已经开发了各种体外技术来加速蛋白质进化,并实现蛋白质功能特性的优化,如底物特异性、酶活性和热稳定性。鸡B细胞系DT40通过基因转换和体细胞超突变使其免疫球蛋白(Ig)基因多样化。这种机制可以针对几乎任何插入到Ig基因座的基因。通过利用复杂遗传结构域的随机重排(基因转换)和引入新的非模板化遗传信息(随机诱变),可以在DT40中快速生成任何感兴趣基因的极其多样的蛋白质文库。鸡细胞系DT40的独特特性使其成为一种强大的细胞内多样化系统,可用于改善活细胞内的目标蛋白质。DT40蛋白质优化方法的一个重要优势是,变体是在细胞内系统中产生的,因此可以在细胞内网络的背景下直接筛选所需特征。利用专门设计的选择策略,如强大的荧光蛋白技术,能够可靠地鉴定出表现出最理想特性的蛋白质变体。因此,DT40作为一种生物技术工具,通过应用基因特异性超突变、基因转换和突变体选择的强大组合来生成优化蛋白质,具有很好的定位。

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