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Biocatalysis in Drug Design: Engineered Reductive Aminases (RedAms) Are Used to Access Chiral Building Blocks with Multiple Stereocenters.


ABSTRACT: Novel building blocks are in constant demand during the search for innovative bioactive small molecule therapeutics by enabling the construction of structure-activity-property-toxicology relationships. Complex chiral molecules containing multiple stereocenters are an important component in compound library expansion but can be difficult to access by traditional organic synthesis. Herein, we report a biocatalytic process to access a specific diastereomer of a chiral amine building block used in drug discovery. A reductive aminase (RedAm) was engineered following a structure-guided mutagenesis strategy to produce the desired isomer. The engineered RedAm (IR-09 W204R) was able to generate the (S,S,S)-isomer 3 in 45% conversion and 95% ee from the racemic ketone 2. Subsequent palladium-catalyzed deallylation of 3 yielded the target primary amine 4 in a 73% yield. This engineered biocatalyst was used at preparative scale and represents a potential starting point for further engineering and process development.

SUBMITTER: Casamajo AR 

PROVIDER: S-EPMC10571080 | biostudies-literature | 2023 Oct

REPOSITORIES: biostudies-literature

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Biocatalysis in Drug Design: Engineered Reductive Aminases (RedAms) Are Used to Access Chiral Building Blocks with Multiple Stereocenters.

Casamajo Arnau Rué AR   Yu Yuqi Y   Schnepel Christian C   Morrill Charlotte C   Barker Rhys R   Levy Colin W CW   Finnigan James J   Spelling Victor V   Westerlund Kristina K   Petchey Mark M   Sheppard Robert J RJ   Lewis Richard J RJ   Falcioni Francesco F   Hayes Martin A MA   Turner Nicholas J NJ  

Journal of the American Chemical Society 20231002 40


Novel building blocks are in constant demand during the search for innovative bioactive small molecule therapeutics by enabling the construction of structure-activity-property-toxicology relationships. Complex chiral molecules containing multiple stereocenters are an important component in compound library expansion but can be difficult to access by traditional organic synthesis. Herein, we report a biocatalytic process to access a specific diastereomer of a chiral amine building block used in d  ...[more]

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