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通过噬菌体展示技术生成一组针对 20 个人类 SH2 结构域的高特异性抗体。

Generating a panel of highly specific antibodies to 20 human SH2 domains by phage display.

机构信息

Department of Biological Sciences, University of Illinois at Chicago, Chicago, IL 60607, USA.

出版信息

Protein Eng Des Sel. 2010 Apr;23(4):279-88. doi: 10.1093/protein/gzq003. Epub 2010 Feb 17.

Abstract

To demonstrate the utility of phage display in generating highly specific antibodies, affinity selections were conducted on 20 related Src Homology 2 (SH2) domains (ABL1, ABL2, BTK, BCAR3, CRK, FYN, GRB2, GRAP2, LYN, LCK, NCK1, PTPN11 C, PIK3R1 C, PLCgamma1 C, RASA1 C, SHC1, SH2D1A, SYK N, VAV1 and the tandem domains of ZAP70). The domains were expressed in Escherichia coli, purified and used in affinity selection experiments. In total, 1292/3800 of the resultant antibodies were shown to bind the target antigen. Of the 695 further evaluated in specificity ELISAs against all 20 SH2 domains, 379 antibodies were identified with unique specificity (i.e. monospecific). Sequence analysis revealed that there were at least 150 different clones with 1-19 different antibodies/antigen. This includes antibodies that distinguish between ABL1 and ABL2, despite their 89% sequence identity. Specificity was confirmed for many on protein arrays fabricated with 432 different proteins. Thus, even though the SH2 domains share a common three-dimensional structure and 20-89% identity at the primary structure level, we were able to isolate antibodies with exquisite specificity within this family of structurally related domains.

摘要

为了展示噬菌体展示在产生高度特异性抗体方面的实用性,对 20 个相关的Src 同源物 2(SH2)结构域(ABL1、ABL2、BTK、BCAR3、CRK、FYN、GRB2、GRAP2、LYN、LCK、NCK1、PTPN11 C、PIK3R1 C、PLCgamma1 C、RASA1 C、SHC1、SH2D1A、SYK N、VAV1 和 ZAP70 的串联结构域)进行了亲和选择。这些结构域在大肠杆菌中表达、纯化并用于亲和选择实验。总共,1292/3800 个得到的抗体被证明与靶抗原结合。在针对所有 20 个 SH2 结构域的特异性 ELISA 中进一步评估的 695 个抗体中,有 379 个抗体被鉴定为具有独特的特异性(即单特异性)。序列分析显示,至少有 150 个不同的克隆具有 1-19 个不同的抗体/抗原。这包括能够区分 ABL1 和 ABL2 的抗体,尽管它们的序列同一性为 89%。在使用 432 种不同蛋白质制造的蛋白质阵列上对许多抗体的特异性进行了验证。因此,尽管 SH2 结构域具有共同的三维结构和一级结构水平上 20-89%的同一性,但我们能够在这个结构相关的结构域家族中分离出具有极高特异性的抗体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ef1/2841545/3579c19c4fe0/gzq00301.jpg

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