Structure and mechanism of human UDP-xylose synthase: evidence for a promoting role of sugar ring distortion in a three-step catalytic conversion of UDP-glucuronic acid

Thomas Eixelsberger, Sabine Sykora, Sigrid Egger, Michael Brunsteiner, Kathryn Kavanagh, Udo Oppermann, Lothar Brecker, Bernd Nidetzky

Research output: Contribution to journalArticleResearchpeer-review

LanguageEnglish
Pages31349-31358
JournalThe Journal of Biological Chemistry
Volume287
Issue number37
StatusPublished - 2012

Fields of Expertise

  • Human- & Biotechnology

Treatment code (Nähere Zuordnung)

  • Basic - Fundamental (Grundlagenforschung)
  • Theoretical
  • Experimental

Cite this

Structure and mechanism of human UDP-xylose synthase: evidence for a promoting role of sugar ring distortion in a three-step catalytic conversion of UDP-glucuronic acid. / Eixelsberger, Thomas; Sykora, Sabine; Egger, Sigrid; Brunsteiner, Michael; Kavanagh, Kathryn; Oppermann, Udo; Brecker, Lothar; Nidetzky, Bernd.

In: The Journal of Biological Chemistry, Vol. 287, No. 37, 2012, p. 31349-31358.

Research output: Contribution to journalArticleResearchpeer-review

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AU - Eixelsberger,Thomas

AU - Sykora,Sabine

AU - Egger,Sigrid

AU - Brunsteiner,Michael

AU - Kavanagh,Kathryn

AU - Oppermann,Udo

AU - Brecker,Lothar

AU - Nidetzky,Bernd

PY - 2012

Y1 - 2012

M3 - Article

VL - 287

SP - 31349

EP - 31358

JO - The Journal of Biological Chemistry

T2 - The Journal of Biological Chemistry

JF - The Journal of Biological Chemistry

SN - 0021-9258

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