生物正交化学
化学
组合化学
荧光素酶
基质(水族馆)
纳米技术
生物化学
基因
点击化学
材料科学
生物
生态学
转染
作者
Zhiguo Gao,Quanlin Shao,Jiaqi Xing,Yi Liang,Fanzhen Meng,Jian Chen,Wei Ma,Yaojia Li,Bai Wang Sun
标识
DOI:10.1002/anie.202409849
摘要
Transition metal catalysts (TMCs) mediated bioorthogonal catalysis expand the chemical possibilities within cells. Developing synthetic TMCs tools that emulate the efficiency and specificity of natural metalloenzymes is a rewarding yet challenging endeavor. Here, we highlight the potential of molecularly imprinted enzyme mimics (MIEs) containing a Cu center and specific substrate binding domain, for conducing dimethylpropargyloxycarbonyl (DmProc) cleavage reactions within cells. Our studies reveal that the Cu‐MIEs act as highly specific guides, precisely catalyzing target substrates, even in glutathione (GSH)‐rich cellular environments. By adapting templates similar to the target substrates, we evolved Cu‐MIEs activity to a high level and provided a method to broaden its scope to other unique substrates. This system was applied to a thyroid hormone (T3)‐responsive gene switch model, inducing firefly luciferase expression by T3 in cells. This approach verifies that MIEs effectively rescue DmProc‐bearing T3 prodrugs and seamlessly integrating themself into cellular biocatalytic networks.
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