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User:Johan Larsbrink

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Associate Professor at the Department of Biology and Biological Engineering, Chalmers University of Technology.

Background

I obtained a MSc degree in Biotechnology at the Royal Institute of Technology (KTH) in 2007, where I later also completed my PhD thesis under the supervision of Harry Brumer, focusing on xyloglucan degradation [1, 2, 3]. After my PhD I worked as a postdoctoral fellow with Phil Pope and Vincent Eijsink at the Norwegian University of Life Sciences (NMBU), mainly on chitin degradation [4]. In 2015 I was appointed Assistant Professor at Chalmers University of Technology, and in 2019 I was promoted to Associate Professor. My research focuses primarily on enzyme (CAZyme) discovery coupled to structural and biochemical characterization.

I have contributed to structure-function studies of CAZymes from various families, including GH5 [2], GH18, GH31 [1, 2, 5], GH35 [3], and CE15 [6, 7].

Selected papers

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  1. Error fetching PMID 21426303: [Larsbrink2011]
  2. Error fetching PMID 24463512: [Larsbrink2014a]
  3. Error fetching PMID 25171165: [Larsbrink2014b]
  4. Larsbrink J, Zhu Y, Kharade SS, Kwiatkowski KJ, Eijsink VG, Koropatkin NM, McBride MJ, and Pope PB. (2016). A polysaccharide utilization locus from Flavobacterium johnsoniae enables conversion of recalcitrant chitin. Biotechnol Biofuels. 2016;9:260. DOI:10.1186/s13068-016-0674-z | PubMed ID:27933102 [Larsbrink2016]
  5. Error fetching PMID 23132856: [Larsbrink2012]
  6. 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 [JAB2018]
  7. Error fetching PMID 30814248: [JAB2019]

All Medline abstracts: PubMed