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Degenerate primer design to clone the human repertoire of immunoglobulin heavy chain variable regions

机译:简并引物设计可克隆人免疫球蛋白重链可变区库

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摘要

Amplifying the variable (Fv or V) regions of immunoglobulins (Ig) has become a challenge in cloning antibody genes for phage display, a technique used to study protein-protein, protein-peptide, and protein-DNA interactions using bacteriophages to connect proteins with the genetic information that encodes them. Key parameters affecting the amplification of full antibody repertoires includes the availability of primers that can amplify as many V genes as possible; however the strategy used to design these primers and programs used to make the necessary alignments have not been well studied and clearly detailed in the literature. Here, we present a set of primers computationally designed by iCODEHOP based on a database of human germline Ig sequences. We used reverse transcription polymerase chain reaction (RT-PCR) protocols that would recognize the V(H) genes from human peripheral blood mononuclear cells. We identified the most highly conserved region in framework 1 and framework 4 of the Ig cDNA, and designed a set of degenerated 5' primers. The V(H) genes were successfully amplified by RT-PCR. This new primer has facilitated the creation of more diverse V(H) libraries than has been previously possible. Moreover, iCODEHOP improved the primer design efficiency and was found useful both for cloning unknown genes in gene families and for building V(H) gene libraries.
机译:扩增免疫球蛋白(Ig)的可变区(Fv或V)已成为克隆噬菌体展示抗体基因的一项挑战,噬菌体展示是一种使用噬菌体将蛋白与蛋白连接的技术,用于研究蛋白,蛋白,肽和蛋白与DNA的相互作用。编码它们的遗传信息。影响完整抗体库扩增的关键参数包括可扩增尽可能多的V基因的引物的可用性。然而,用于设计这些引物和用于进行必要的比对的程序的策略尚未得到充分研究,并且在文献中也未作详细描述。在这里,我们介绍了一组基于人类种系Ig序列的数据库通过iCODEHOP计算设计的引物。我们使用了逆转录聚合酶链反应(RT-PCR)协议,该协议将从人外周血单核细胞中识别V(H)基因。我们在Ig cDNA的框架1和框架4中鉴定了最高度保守的区域,并设计了一组简并的5'引物。通过RT-PCR成功扩增了V(H)基因。这种新的引物比以前可能的创建了更多的V(H)库。此外,iCODEHOP提高了引物设计效率,并发现可用于克隆基因家族中的未知基因和用于构建V(H)基因文库。

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