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用于快速完全蛋白质生物共轭的四嗪氨基酸编码

Tetrazine Amino Acid Encoding for Rapid and Complete Protein Bioconjugation.

作者信息

Eddins Alex J, Pung Abigail H, Cooley Richard B, Mehl Ryan A

机构信息

Department of Biochemistry and Biophysics, Oregon State University, 2011 Agricultural and Life Sciences, Corvallis, OR, USA.

GCE4All Research Center, Oregon State University, 2011 Agricultural and Life Sciences, Corvallis, OR, USA.

出版信息

Bio Protoc. 2024 Aug 20;14(16):e5048. doi: 10.21769/BioProtoc.5048.

Abstract

Generating protein conjugates using the bioorthogonal ligation between tetrazines and -cyclooctene groups avoids the need to manipulate cysteine amino acids; this ligation is rapid, site-specific, and stoichiometric and allows for labeling of proteins in complex biological environments. Here, we provide a protocol for the expression of conjugation-ready proteins at high yields in with greater than 95% encoding and labeling fidelity. This protocol focuses on installing the Tet2 tetrazine amino acid using an optimized genetic code expansion (GCE) machinery system, Tet2 pAJE-E7, to direct Tet2 encoding at TAG stop codons in BL21 strains, enabling reproducible expression of Tet2-proteins that quantitatively react with trans-cyclooctene (TCO) groups within 5 min at room temperature and physiological pH. The use of the BL21 derivative B95(DE3) minimizes premature truncation byproducts caused by incomplete suppression of TAG stop codons, which makes it possible to use more diverse protein construct designs. Here, using a superfolder green fluorescent protein construct as an example protein, we describe in detail a four-day process for encoding Tet2 with yields of ~200 mg per liter of culture. Additionally, a simple and fast diagnostic gel electrophoretic mobility shift assay is described to confirm Tet2-Et encoding and reactivity. Finally, strategies are discussed to adapt the protocol to alternative proteins of interest and optimize expression yields and reactivity for that protein. Key features • Protocol describes site-specific encoding of the tetrazine amino acid Tet2-Et into proteins for bioorthogonal, quantitative, and rapid attachment of -cyclooctene-containing labels. • Protocol uses auto-induction methods for the production Tet2-Et protein in • This protocol focuses on Tet-protein expressions in BL21(DE3) and B95(DE3) strains, which take approximately 4 days to complete. • SDS-PAGE mobility shift assay using a strained TCO-PEG (sTCO-PEG) reagent provides a simple, generalizable method for testing Tet-protein reactivity.

摘要

利用四嗪与环辛烯基团之间的生物正交连接生成蛋白质缀合物,无需对半胱氨酸氨基酸进行操作;这种连接快速、位点特异性且化学计量比明确,能够在复杂的生物环境中对蛋白质进行标记。在此,我们提供了一种在大肠杆菌中以高产率表达可用于缀合的蛋白质的方案,编码和标记保真度大于95%。该方案重点在于使用优化的遗传密码扩展(GCE)机制系统Tet2 pAJE-E7将四嗪氨基酸Tet2安装到蛋白质中,以指导在BL21菌株的TAG终止密码子处进行Tet2编码,从而实现Tet2蛋白的可重复表达,该蛋白在室温及生理pH条件下能在5分钟内与反式环辛烯(TCO)基团发生定量反应。使用BL21衍生物B95(DE3)可将因TAG终止密码子抑制不完全导致的过早截断副产物降至最低,这使得使用更多样化的蛋白质构建体设计成为可能。在此,我们以超级文件夹绿色荧光蛋白构建体作为示例蛋白,详细描述了一个为期四天的编码Tet2的过程,每升培养物的产量约为200毫克。此外,还描述了一种简单快速的诊断性凝胶电泳迁移率变动分析方法,以确认Tet2-Et的编码和反应性。最后,讨论了将该方案应用于其他感兴趣的蛋白质并优化该蛋白质的表达产量和反应性的策略。关键特性 • 本方案描述了将四嗪氨基酸Tet2-Et位点特异性编码到蛋白质中,用于生物正交、定量且快速连接含环辛烯的标签。 • 本方案使用自诱导方法在大肠杆菌中生产Tet2-Et蛋白。 • 本方案重点在于在BL21(DE3)和B95(DE3)菌株中表达Tet蛋白,这一过程大约需要4天完成。 • 使用应变TCO-PEG(sTCO-PEG)试剂进行SDS-PAGE迁移率变动分析,为测试Tet蛋白的反应性提供了一种简单、通用的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b27/11349492/55f5d57b52e2/BioProtoc-14-16-5048-g001.jpg

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