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Publikasjoner

  • Wang, Nelson; Anonsen, Jan Haug; Hadjineophytou, Chris; Reinar, William Brynildsen; Børud, Bente & Vik, Åshild [Vis alle 7 forfattere av denne artikkelen] (2020). Allelic polymorphisms in a glycosyltransferase gene shape glycan repertoire in the O-linked protein glycosylation system of Neisseria. Glycobiology. ISSN 0959-6658. doi: 10.1093/glycob/cwaa073. Fulltekst i vitenarkiv
  • Hadjineophytou, Chris; Anonsen, Jan Haug; Wang, Nelson; Ma, Kevin; Viburiene, Raimonda & Vik, Åshild [Vis alle 10 forfattere av denne artikkelen] (2019). Genetic determinants of genus-level glycan diversity in a bacterial protein glycosylation system. PLoS Genetics. ISSN 1553-7390. 15(12), s. 1–24. doi: 10.1371/journal.pgen.1008532. Fulltekst i vitenarkiv
  • Wang, Nelson; Anonsen, Jan Haug; Viburiene, Raimonda; Lam, Joseph S; Vik, Åshild & Koomey, Michael (2019). Disrupted synthesis of a di-N-acetylated sugar perturbs mature glycoform structure and microheterogeneity in the O-linked protein glycosylation system of Neisseria elongata subsp. glycolytica. Journal of Bacteriology. ISSN 0021-9193. 201(1). doi: 10.1128/JB.00522-18.

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  • Wang, Nelson; Anonsen, Jan Haug; Vik, Åshild & Koomey, Michael (2018). Functional analyses of a glycosyltransferase reveal a genus-wide trajectory for glycan evolution in a bacterial protein glycosylation system.
  • Wang, Nelson; Anonsen, Jan Haug; Viburiene, Raimonda; Lam, Joseph S; Vik, Åshild & Koomey, Michael (2016). Identification and analyses of pgl genes required for tetrasaccharide biosynthesis in Neisseria elongata subsp. glycolytica reveals patterns of protein glycosylation evolution at the genus level.
  • Wang, Nelson (2015). Bacterial Protein Glycosylation: an Evolutionary Perspective from the genus Neisseria.

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Publisert 27. apr. 2015 08:29 - Sist endret 2. nov. 2017 14:13