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Microbial rhodoquinone biosynthesis proceeds via an atypical RquA-catalyzed amino transfer from S-adenosyl-L-methionine to ubiquinone

  • Trilok Neupane
    ,
  • Lydia R. Chambers
    ,
  • Alexander J. Godfrey
    ,
  • Melina M. Monlux
    ,
  • Evan J. Jacobs
    ,
  • Sophia Whitworth
*Corresponding author for this work
Research Output:
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Open access

Abstract

Rhodoquinone (RQ) is a close analogue of ubiquinone (UQ) that confers diverse bacterial and eukaryotic taxa the ability to utilize fumarate as an electron acceptor in hypoxic conditions. The RquA protein, identified in a Rhodospirillum rubrum RQ-deficient mutant, has been shown to be required for RQ biosynthesis in bacteria. In this report, we demonstrate that RquA, homologous to SAM-dependent methyltransferases, is necessary and sufficient to catalyze RQ biosynthesis from UQ in vitro. Remarkably, we show that RquA uses SAM as the amino group donor in a substitution reaction that converts UQ to RQ. In contrast to known aminotransferases, RquA does not use pyridoxal 5’-phosphate (PLP) as a coenzyme, but requires the presence of Mn2+ as a cofactor. As these findings reveal, RquA provides an example of a non-canonical SAM-dependent enzyme that does not catalyze methyl transfer, instead it uses SAM in an atypical amino transfer mechanism.

Bibliographic Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Article number

89

Journal (Volume, Issue Number)

Communications Chemistry (Volume 5, Issue 1)

Publication milestones

  • Published - 12/2022

Publication status

Published - 12/2022

Publication IDs

  • Scopus: 85135271251