Nicholas V. Coleman
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Articles (13)
A novel soluble di‐iron monooxygenase from the soil bacterium <scp><i>Solimonas soli</i></scp>
Soluble di‐iron monooxygenase (SDIMO) enzymes enable insertion of oxygen into diverse substrates and play significant roles in biogeochemistry, bioremediation and biocatalysis. An unusual SDIMO was detected in an earlier study in the genome of the soil organism Solimonas soli , but was not characterized. Here, we show that the S. soli SDIMO is part of a new clade, which we define as ‘Group 7’; these share a conserved gene organization with alkene monooxygenases but have only low amino acid identity. The S. soli genes (named zmoABCD ) could be functionally expressed in Pseudomonas putida KT2440 but not in Escherichia coli TOP10. The recombinants made epoxides from C 2 C 8 alkenes, preferring small linear alkenes (e.g. propene), but also epoxidating branched, carboxylated and chlorinated substrates. Enzymatic epoxidation of acrylic acid was observed for the first time. ZmoABCD oxidised the organochlorine pollutants vinyl chloride (VC) and cis ‐1,2‐dichloroethene (cDCE), with the release of inorganic chloride from VC but not cDCE. The original host bacterium S. soli could not grow on any alkenes tested but grew well on phenol and n ‐octane. Further work is needed to link ZmoABCD and the other Group 7 SDIMOs to specific physiological and ecological roles.
Year:
2024
Collaborators (11)
Vaheesan Rajabal
Macquarie University
Colin Scott
Chief Scientific Officer
uu.nl
Gary Muscatello
Senior Lecturer in Veterinary Microbiology and ONE Health
University of Sydney
Sasha Tetu
Macquarie University
Stuart Khan
Professor
University of New South Wales
Timothy Ghaly
Macquarie University
Anahit Penesyan
Macquarie University
Liam Elbourne
Macquarie University
Yukihiro Kinjo
Okinawa Institute of Science and Technology Graduate University
Denis M. O'Carroll
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Gaku Tokuda
Professor
University of the Ryukyus

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