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Structures of DPAGT1 Explain Glycosylation Disease Mechanisms and Advance TB Antibiotic Design

  • Yin Yao Dong
  • , Hua Wang
  • , Ashley C.W. Pike
  • , Stephen A. Cochrane
  • , Sadra Hamedzadeh
  • , Filip J. Wyszyński
  • , Simon R. Bushell
  • , Sylvain F. Royer
  • , David A. Widdick
  • , Andaleeb Sajid
  • , Helena I. Boshoff
  • , Yumi Park
  • , Ricardo Lucas
  • , Wei Wei Liu
  • , Seung Seo Lee
  • , Takuya Machida
  • , Leanne Minall
  • , Shahid Mehmood
  • , Katsiaryna Belaya
  • , Wei Wei Liu
  • Amy Chu, Leela Shrestha, Shubhashish M.M. Mukhopadhyay, Claire Strain-Damerell, Rod Chalk, Nicola A. Burgess-Brown, Mervyn J. Bibb, Clifton E. Barry, Carol V. Robinson, David Beeson, Benjamin G. Davis*, Elisabeth P. Carpenter
*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

Protein N-glycosylation is a widespread post-translational modification. The first committed step in this process is catalysed by dolichyl-phosphate N-acetylglucosamine-phosphotransferase DPAGT1 (GPT/E.C. 2.7.8.15). Missense DPAGT1 variants cause congenital myasthenic syndrome and disorders of glycosylation. In addition, naturally-occurring bactericidal nucleoside analogues such as tunicamycin are toxic to eukaryotes due to DPAGT1 inhibition, preventing their clinical use. Our structures of DPAGT1 with the substrate UDP-GlcNAc and tunicamycin reveal substrate binding modes, suggest a mechanism of catalysis, provide an understanding of how mutations modulate activity (thus causing disease) and allow design of non-toxic “lipid-altered” tunicamycins. The structure-tuned activity of these analogues against several bacterial targets allowed the design of potent antibiotics for Mycobacterium tuberculosis, enabling treatment in vitro, in cellulo and in vivo, providing a promising new class of antimicrobial drug.

Original languageEnglish
Pages (from-to)1045-1058.e16
JournalCell
Volume175
Issue number4
DOIs
Publication statusPublished - 1 Nov 2018
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • congenital disorders of glycosylation
  • congenital myasthenic syndrome
  • DPAGT1
  • GPT
  • Protein N-glycosylation
  • tunicamycin

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