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Difference between revisions of "User:Scott Mazurkewich"

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'''This is an empty template to help you get started with composing your User page.'''
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'''Post Doctoral Researcher''' at the Department of Biology and Biological Engineering, [http://www.chalmers.se Chalmers University of Technology].
  
Scott obtained both his BSc and PhD from the University of Guelph in Canada. His PhD work, completed under the supervision of Stephen Seah, was on structure-function studies of enzymes involved in the metabolism of aromatic lignin fragments in Pseudomonas. Shortly after completing his PhD studies he took up a post-doctoral research position with Johan Larsbrink at the Chalmers University of Technology where he has been working collaboratively with Jenny AB and Leila Lo Leggio on structure-function studies of bacterial CE15 members.
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== Background ==
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Scott obtained both his BSc and PhD from the [https://www.uoguelph.ca/ University of Guelph] in Canada. His PhD work, completed under the supervision of [https://www.uoguelph.ca/mcb/people/dr-stephen-seah, Stephen Seah], was on structure-function studies of enzymes involved in the metabolism of aromatic lignin fragments in <i>Pseudomonas</i> <cite>Wang2010, Mazurkewich2014, Mazurkewich2016</cite>. Shortly after completing his PhD studies, he started a post-doctoral research position with [[User:Johan Larsbrink|Johan Larsbrink]] at Chalmers University. There he has been working collaboratively with [[User:Jenny Arnling Bååth|Jenny Arnling Bååth]] and [[User:Leila LoLeggio|Leila Lo Leggio]] on structure-function studies of bacterial [[CE15]] members.
  
* See [[User:Gerlind_Sulzenbacher]] for an example.  You may copy text from this example by opening the page in another browser window and clicking the "Edit" tab.
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== Selected papers ==
* Add your publications in the list below using PubMed IDs and cite them in the text like this <cite>ArnlingBaath2018a</cite>.
 
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<biblio>
 
<biblio>
#ArnlingBaath2018a pmid=30083226
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#Wang2010 pmid=20843800
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#Mazurkewich2014 pmid=24359411
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#Mazurkewich2016 pmid=26867578
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#ArnlingBaath2018 pmid=30083226
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</biblio>
  
</biblio>
 
  
 
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[[Category:Contributors|Mazurkewich,Scott]]
 
[[Category:Contributors|Mazurkewich,Scott]]

Latest revision as of 14:37, 18 December 2021

Scott Mazurkewich.jpg

Post Doctoral Researcher at the Department of Biology and Biological Engineering, Chalmers University of Technology.

Background

Scott obtained both his BSc and PhD from the University of Guelph in Canada. His PhD work, completed under the supervision of Stephen Seah, was on structure-function studies of enzymes involved in the metabolism of aromatic lignin fragments in Pseudomonas [1, 2, 3]. Shortly after completing his PhD studies, he started a post-doctoral research position with Johan Larsbrink at Chalmers University. There he has been working collaboratively with Jenny Arnling Bååth and Leila Lo Leggio on structure-function studies of bacterial CE15 members.

Selected papers

  1. Wang W, Mazurkewich S, Kimber MS, and Seah SY. (2010). Structural and kinetic characterization of 4-hydroxy-4-methyl-2-oxoglutarate/4-carboxy-4-hydroxy-2-oxoadipate aldolase, a protocatechuate degradation enzyme evolutionarily convergent with the HpaI and DmpG pyruvate aldolases. J Biol Chem. 2010;285(47):36608-15. DOI:10.1074/jbc.M110.159509 | PubMed ID:20843800 [Wang2010]
  2. Mazurkewich S, Wang W, and Seah SY. (2014). Biochemical and structural analysis of RraA proteins to decipher their relationships with 4-hydroxy-4-methyl-2-oxoglutarate/4-carboxy-4-hydroxy-2-oxoadipate aldolases. Biochemistry. 2014;53(3):542-53. DOI:10.1021/bi401486g | PubMed ID:24359411 [Mazurkewich2014]
  3. Mazurkewich S, Brott AS, Kimber MS, and Seah SY. (2016). Structural and Kinetic Characterization of the 4-Carboxy-2-hydroxymuconate Hydratase from the Gallate and Protocatechuate 4,5-Cleavage Pathways of Pseudomonas putida KT2440. J Biol Chem. 2016;291(14):7669-86. DOI:10.1074/jbc.M115.682054 | PubMed ID:26867578 [Mazurkewich2016]
  4. Arnling Bååth J, Mazurkewich S, Knudsen RM, Poulsen JN, Olsson L, Lo Leggio L, and Larsbrink J. (2018). Biochemical and structural features of diverse bacterial glucuronoyl esterases facilitating recalcitrant biomass conversion. Biotechnol Biofuels. 2018;11:213. DOI:10.1186/s13068-018-1213-x | PubMed ID:30083226 [ArnlingBaath2018]

All Medline abstracts: PubMed