首页> 外文期刊>Journal of Molecular Biology >De novo selection of high-affinity antibodies from synthetic fab libraries displayed on phage as pIX fusion proteins.
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De novo selection of high-affinity antibodies from synthetic fab libraries displayed on phage as pIX fusion proteins.

机译:从噬菌体上以pIX融合蛋白形式展示的合成fab库从头开始选择高亲和力抗体。

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摘要

Filamentous phage was the first display platform employed to isolate antibodies in vitro and is still the most broadly used. The success of phage display is due to its robustness, ease of use, and comprehensive technology development, as well as a broad range of selection methods developed during the last two decades. We report here the first combinatorial synthetic Fab libraries displayed on pIX, a fusion partner different from the widely used pIII. The libraries were constructed on four V(L) and three V(H) domains encoded by IGV and IGJ germ-line genes frequently used in human antibodies, which were diversified to mirror the variability observed in the germ-line genes and antibodies isolated from natural sources. Two sets of libraries were built, one with diversity focused on V(H) by keeping V(L) in the germ-line gene configuration and the other with diversity in both V domains. After selection on a diverse panel of proteins, numerous specific Fabs with affinities ranging from 0.2 nM to 20 nM were isolated. V(H) diversity was sufficient for isolating Fabs to most antigens, whereas variability in V(L) was required for isolation of antibodies to some targets. After the application of an integrated maturation process consisting of reshuffling V(L) diversity, the affinity of selected antibodies was improved up to 100-fold to the low picomolar range, suitable for in vivo studies. The results demonstrate the feasibility of displaying complex Fab libraries as pIX fusion proteins for antibody discovery and optimization and lay the foundation for studies on the structure-function relationships of antibodies.
机译:丝状噬菌体是用于体外分离抗体的第一个展示平台,至今仍被最广泛地使用。噬菌体展示的成功归因于其坚固性,易用性和全面的技术开发,以及过去二十年来开发的多种选择方法。我们在这里报告在pIX上展示的第一个组合合成Fab库,它是与广泛使用的pIII不同的融合伴侣。该文库是在人抗体中经常使用的IGV和IGJ种系基因编码的四个V(L)和三个V(H)域上构建的,这些域被多样化以反映在种系基因和从中分离的抗体中观察到的变异性自然资源。建立了两套文库,一套通过将V(L)保持在种系基因配置中而集中于V(H),另一套在两个V域中均具有多样性。在多种蛋白质上进行选择后,分离了亲和力范围从0.2 nM至20 nM的众多特异性Fab。 V(H)多样性足以将Fab与大多数抗原分离,而V(L)的变异性是分离针对某些靶标的抗体所必需的。在应用由重组V(L)多样性组成的综合成熟过程后,所选抗体的亲和力提高了100倍,达到了低皮摩尔范围,适合进行体内研究。结果证明了展示复杂的Fab文库作为pIX融合蛋白用于抗体发现和优化的可行性,并为研究抗体的结构-功能关系奠定了基础。

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