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January 14, 2021SHILAP Revista de lepidopterología393 citationsOpen Access

Power of Biocatalysis for Organic Synthesis

CWChristoph K. WinklerJSJoerg H. SchrittwieserWKWolfgang Kroutil

Key Points

  • To review the mechanistic principles, evolutionary engineering strategies, and industrial applications of biocatalysts in organic synthesis.
  • Analyzed the structural and mechanistic factors underlying enzyme stereo-, regio-, and chemoselectivity within active site microenvironments.
  • Evaluated techniques in enzyme engineering, non-natural substrate integration, and multi-catalyst one-pot reaction cascades.
  • Demonstrated that precise 3D spatial alignment and targeted protein-substrate interactions govern high catalytic efficiency and selectivity in biotransformations.
  • Showed that enzyme engineering and multi-enzyme one-pot systems streamline synthetic routes and improve overall efficiency for complex target molecules.

Abstract

Biocatalysis, using defined enzymes for organic transformations, has become a common tool in organic synthesis, which is also frequently applied in industry. The generally high activity and outstanding stereo-, regio-, and chemoselectivity observed in many biotransformations are the result of a precise control of the reaction in the active site of the biocatalyst. This control is achieved by exact positioning of the reagents relative to each other in a fine-tuned 3D environment, by specific activating interactions between reagents and the protein, and by subtle movements of the catalyst. Enzyme engineering enables one to adapt the catalyst to the desired reaction and process. A well-filled biocatalytic toolbox is ready to be used for various reactions. Providing nonnatural reagents and conditions and evolving biocatalysts enables one to play with the myriad of options for creating novel transformations and thereby opening new, short pathways to desired target molecules. Combining several biocatalysts in one pot to perform several reactions concurrently increases the efficiency of biocatalysis even further.

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Cite This Study

Winkler et al. (2021) studied this question.

synapsesocial.com/papers/69d83c0333ca018b39ae3751https://doi.org/10.1021/acscentsci.0c01496
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