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The structure of the PanD/PanZ protein complex reveals negative feedback regulation of pantothenate biosynthesis by coenzyme a

  • Diana C.F. Monteiro
  • , Vijay Patel
  • , Christopher P. Bartlett
  • , Shingo Nozaki
  • , Thomas D. Grant
  • , James A. Gowdy
  • , Gary S. Thompson
  • , Arnout P. Kalverda
  • , Edward H. Snell
  • , Hironori Niki
  • , Arwen R. Pearson
  • , Michael E. Webb
  • University of Leeds
  • National Institute of Genetics Mishima
  • The Graduate University for Advanced Studies

Research output: Contribution to journalArticlepeer-review

32 Scopus citations

Abstract

Coenzyme A (CoA) is an ubiquitous and essential cofactor, synthesized from the precursor pantothenate. Vitamin biosynthetic pathways are normally tightly regulated, including the pathway from pantothenate to CoA. However, no regulation of pantothenate biosynthesis has been identified. We have recently described an additional component in the pantothenate biosynthetic pathway, PanZ, which promotes the activation of the zymogen, PanD, to form aspartate α-decarboxylase (ADC) in a CoA-dependent manner. Here we report the structure of PanZ in complex with PanD, which reveals the structural basis for the CoA dependence of this interaction and activation. In addition, we show that PanZ acts as a CoA-dependent inhibitor of ADC catalysis. This inhibitory effect can effectively regulate the biosynthetic pathway to pantothenate, and thereby also regulate CoA biosynthesis. This represents a previously unobserved mode of metabolic regulation whereby a cofactor-utilizing protein negatively regulates the biosynthesis of the same cofactor.

Original languageEnglish
Pages (from-to)492-503
Number of pages12
JournalChemistry and Biology
Volume22
Issue number4
DOIs
StatePublished - Apr 23 2015

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