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用于热稳定绿色荧光蛋白的基于结构的共价纳米抗体结合物设计

Structure-based design of covalent nanobody binders for a thermostable green fluorescence protein.

作者信息

Yue Zhihao, Li Yanfang, Cai Hongmin, Yao Hebang, Li Dianfan, Ni Aimin, Li Tingting

机构信息

Center for Excellence in Molecular Cell Science, Shanghai Institute of Biochemistry and Cell Biology, Chinese Academy of Sciences, Shanghai 200031, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Acta Biochim Biophys Sin (Shanghai). 2024 Dec 24;57(8):1363-1370. doi: 10.3724/abbs.2024233.

Abstract

The use of green fluorescence protein (GFP) has advanced numerous areas of life sciences. An ultra-thermostable GFP (TGP), engineered from a coral GFP, offers potential advantages over traditional jellyfish-derived GFP because of its high stability. However, owing to its later discovery, TGP lacks the extensive toolsets available for GFP, such as heavy chain-only antibody binders known as nanobodies. In this study, we report the crystal structure of TGP in complex with Sb92, a synthetic nanobody identified from a previous screening, revealing Sb92's precise three-dimensional epitope. This structural insight, alongside the previously characterized Sb44-TGP complex, allows us to rationally design disulfide bonds between the antigen and the antibody for tighter interactions. Using biochemical analysis, we identify two bridged complexes (TGP A18C-Sb44 V100C and TGP E118C-Sb92 S57C), with the TGP-Sb92 disulfide pair showing high resistance to reducing agents. Our study expands the toolkit available for TGP and should encourage its wider applications.

摘要

绿色荧光蛋白(GFP)的应用推动了生命科学诸多领域的发展。一种由珊瑚GFP改造而来的超耐热GFP(TGP),因其高稳定性,相较于传统的水母来源GFP具有潜在优势。然而,由于TGP发现较晚,它缺乏像仅含重链抗体结合物(即纳米抗体)等可用于GFP的广泛工具集。在本研究中,我们报道了TGP与Sb92(一种从先前筛选中鉴定出的合成纳米抗体)形成的复合物的晶体结构,揭示了Sb92精确的三维表位。这一结构见解,连同先前表征的Sb44 - TGP复合物,使我们能够合理设计抗原与抗体之间的二硫键以实现更紧密的相互作用。通过生化分析,我们鉴定出两种桥连复合物(TGP A18C - Sb44 V100C和TGP E118C - Sb92 S57C),其中TGP - Sb92二硫键对表现出对还原剂的高抗性。我们的研究扩展了可用于TGP的工具集,并应促进其更广泛的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a36e/12368520/51b6f340c338/t1.jpg

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