Intracellular assembly of artificial enzymes for cytoplasmic enantioselective Mannich reactions
Внутриклеточная сборка искусственных ферментов для цитоплазматических энантиоселективных реакций Манниха
2026-07-01
SCID: 54.1/c6x534mn
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artificial enzymesasymmetric Mannich reactioncovalent anchoringintracellular assemblysite-specific disulfide-bond formation
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Abstract (AI)
Artificial enzymes constructed by introducing abiological catalytic cofactors into protein scaffolds are emerging as promising biocatalysts for reactions that have no natural equivalents. However, the design of artificial enzymes for in cellulo stereoselective biosynthesis remains largely unexplored because of the numerous challenges posed by the complex cellular environment. Here, we present an efficient strategy for the intracellular assembly of artificial enzymes via covalent anchoring by incubating cells that are expressing target protein with a synthetic catalytic cofactor, in the manner of natural enzymes. The artificial enzyme is assembled efficiently via site-specific disulfide-bond formation in cells, and it catalyzes an asymmetric Mannich reaction in cellulo with excellent enantioselectivity and reactivity. Crystallographic analysis combined with computational studies provides structural and mechanistic insight into the stereoselectivity and catalytic proficiency. Overall, this work establishes a versatile and generalizable approach to construct artificial enzymes in cellulo, expanding the toolkit for tailored synthetic applications in cellular contexts. Artificial enzymes constructed by introducing abiological catalytic cofactors into protein scaffolds are promising biocatalysts for reactions that have no natural equivalents, however the design of artificial enzymes for in cellulo, stereoselective biosynthesis of non-natural products remains unexplored. Here, the authors present a strategy for the intracellular modular assembly of artificial enzymes via covalent anchoring by incubating cells that are expressing the target protein with a synthetic catalytic cofactor, and the resulting artificial enzyme catalyzed an unnatural asymmetric Mannich reaction in cellulo.
Key Findings
1
A strategy for intracellular assembly of artificial enzymes was developed by incubating cells expressing a target protein with a synthetic catalytic cofactor to achieve covalent anchoring.
2
Crystallographic analysis and computational studies provided structural and mechanistic insights explaining the stereoselectivity and catalytic proficiency.
3
The approach is presented as versatile and generalizable for constructing artificial enzymes in cellular contexts, expanding tools for stereoselective biosynthesis of non-natural products.
4
The artificial enzyme is assembled in cells via site-specific disulfide-bond formation between protein and cofactor.
5
The intracellularly assembled artificial enzyme catalyzes an asymmetric Mannich reaction in cellulo with excellent enantioselectivity and high reactivity.
Research Object
Intracellularly assembled artificial enzymes (protein scaffolds covalently anchored to synthetic abiological catalytic cofactors) in cells
Research Subject
Catalysis of asymmetric (enantioselective) Mannich reactions in cellulo, including stereoselectivity, reactivity, and the structural/mechanistic basis of catalytic proficiency
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2026-07-01
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