生物结合
结合
连接器
化学
组合化学
醛
背景(考古学)
肽
生物化学
生物正交化学
计算生物学
计算机科学
生物
点击化学
催化作用
操作系统
数学分析
古生物学
数学
作者
Junjie Liu,Robyn M. Barfield,David Rabuka
标识
DOI:10.1007/978-1-4939-9654-4_10
摘要
As a critical feature of the next generation of antibody–drug conjugates (ADCs), site-specific bioconjugation approaches can help to optimize stability, pharmacokinetics, efficacy, and safety as well as improve manufacturing consistency. The SMARTag® technology platform offers a practical and efficient chemoenzymatic solution for site-specific protein modifications. A bioorthogonal aldehyde handle is introduced through the oxidation of a cysteine residue, embedded in a specific peptide sequence (CxPxR), to the aldehyde-bearing formylglycine (fGly). This enzymatic modification is carried out by the formylglycine-generating enzyme (FGE). The broad recognition of this short sequence by FGE within the context of heterologous proteins allows for the introduction of fGly residues at chosen sites in proteins expressed in prokaryotic and eukaryotic systems. The protocol presented here describes the methods for expressing fGly-containing antibodies in eukaryotic cells and subsequent site-specific conjugation with a payload-linker using aldehyde-specific Hydrazino-Iso-Pictet–Spengler (HIPS) chemistry.
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