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Engineered Cytochrome c-Catalyzed Lactone-Carbene B-H Insertion.


ABSTRACT: Previous work has demonstrated that variants of a heme protein, Rhodothermus marinus cytochrome c (Rma cyt c), catalyze abiological carbene boron-hydrogen (B-H) bond insertion with high efficiency and selectivity. Here we investigated this carbon-boron bondforming chemistry with cyclic, lactone-based carbenes. Using directed evolution, we obtained a Rma cyt c variant BOR LAC that shows high selectivity and efficiency for B-H insertion of 5- and 6-membered lactone carbenes (up to 24,500 total turnovers and 97.1:2.9 enantiomeric ratio). The enzyme shows low activity with a 7-membered lactone carbene. Computational studies revealed a highly twisted geometry of the 7membered lactone carbene intermediate relative to 5- and 6-membered ones. Directed evolution of cytochrome c together with computational characterization of key iron-carbene intermediates has allowed us to expand the scope of enzymatic carbene B-H insertion to produce new lactone-based organoborons.

SUBMITTER: Chen K 

PROVIDER: S-EPMC6436545 | biostudies-literature | 2019 Mar

REPOSITORIES: biostudies-literature

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Engineered Cytochrome <i>c</i>-Catalyzed Lactone-Carbene B-H Insertion.

Chen Kai K   Huang Xiongyi X   Zhang Shuo-Qing SQ   Zhou Andrew Z AZ   Kan S B Jennifer SBJ   Hong Xin X   Arnold Frances H FH  

Synlett : accounts and rapid communications in synthetic organic chemistry 20190114 4


Previous work has demonstrated that variants of a heme protein, <i>Rhodothermus marinus</i> cytochrome <i>c</i> (<i>Rma</i> cyt <i>c</i>), catalyze abiological carbene boron-hydrogen (B-H) bond insertion with high efficiency and selectivity. Here we investigated this carbon-boron bondforming chemistry with cyclic, lactone-based carbenes. Using directed evolution, we obtained a <i>Rma</i> cyt <i>c</i> variant <b>BOR</b> <sup><b>LAC</b></sup> that shows high selectivity and efficiency for B-H inse  ...[more]

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