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Difference between revisions of "User:Maria Cleveland"

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Maria Cleveland obtained her B.Sc. in Biology from Queen’s University in Ontario, Canada and completed her PhD in Chemistry under the supervision of Dr. Harry Brumer at the University of British Columbia in the Michael Smith Laboratories. The work focused on recombinant production, biochemical characterization and product analysis of fungal Auxiliary Activity enzymes, specifically [[AA5]]_2 <cite>Cleveland2021a Cleveland2021b</cite>.
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Maria Cleveland obtained her B.Sc. in Biology in 2014 from Queen’s University in Ontario, Canada. She had worked in the laboratories of Dr. Stan Brown, Dr. Laurent Seroude and Dr. David Zechel studying palladium based metallocycle catalysts, genetics of fruit flies and secondary metabolites of ''Streptomyces curacoi'', respectively. The in 2015, she moved to British Columbia where she completed her PhD in Chemistry under the supervision of Dr. Harry Brumer at the University of British Columbia in the Michael Smith Laboratories. The work focused on recombinant production, biochemical characterization and product analysis of fungal Auxiliary Activity enzymes, specifically [[AA5]]_2 <cite>Cleveland2021a Cleveland2021b</cite>.
  
 
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Revision as of 10:53, 26 November 2021

Maria 2018.jpg

Maria Cleveland obtained her B.Sc. in Biology in 2014 from Queen’s University in Ontario, Canada. She had worked in the laboratories of Dr. Stan Brown, Dr. Laurent Seroude and Dr. David Zechel studying palladium based metallocycle catalysts, genetics of fruit flies and secondary metabolites of Streptomyces curacoi, respectively. The in 2015, she moved to British Columbia where she completed her PhD in Chemistry under the supervision of Dr. Harry Brumer at the University of British Columbia in the Michael Smith Laboratories. The work focused on recombinant production, biochemical characterization and product analysis of fungal Auxiliary Activity enzymes, specifically AA5_2 [1, 2].


  1. Cleveland M, Lafond M, Xia FR, Chung R, Mulyk P, Hein JE, and Brumer H. (2021). Two Fusarium copper radical oxidases with high activity on aryl alcohols. Biotechnol Biofuels. 2021;14(1):138. DOI:10.1186/s13068-021-01984-0 | PubMed ID:34134727 [Cleveland2021a]
  2. Cleveland ME, Mathieu Y, Ribeaucourt D, Haon M, Mulyk P, Hein JE, Lafond M, Berrin JG, and Brumer H. (2021). A survey of substrate specificity among Auxiliary Activity Family 5 copper radical oxidases. Cell Mol Life Sci. 2021;78(24):8187-8208. DOI:10.1007/s00018-021-03981-w | PubMed ID:34738149 [Cleveland2021b]
  3. Gilbert HJ, Stålbrand H, and Brumer H. (2008). How the walls come crumbling down: recent structural biochemistry of plant polysaccharide degradation. Curr Opin Plant Biol. 2008;11(3):338-48. DOI:10.1016/j.pbi.2008.03.004 | PubMed ID:18430603 [Gilbert2008]

All Medline abstracts: PubMed