4.7 Article

Structural Insight into the Core of CAD, the Multifunctional Protein Leading De Novo Pyrimidine Biosynthesis

Journal

STRUCTURE
Volume 25, Issue 6, Pages 912-+

Publisher

CELL PRESS
DOI: 10.1016/j.str.2017.04.012

Keywords

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Funding

  1. Spanish Ministry of Economy and Competitiveness (MINECO) [BFU2013-48365-P, BFU2016-80570-R]
  2. CNIO Intramural Program
  3. MINECO

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CAD, the multifunctional protein initiating and controlling de novo biosynthesis of pyrimidines in animals, self-assembles into similar to 1.5 MDa hexamers. The structures of the dihydroorotase (DHO) and aspartate transcarbamoylase (ATC) domains of human CAD have been previously determined, but we lack information on how these domains associate and interact with the rest of CAD forming a multienzymatic unit. Here, we prove that a construct covering human DHO and ATC oligomerizes as a dimer of trimers and that this arrangement is conserved in CAD-like from fungi, which holds an inactive DHOlike domain. The crystal structures of the ATC trimer and DHO-like dimer from the fungus Chaetomium thermophilum confirm the similarity with the human CAD homologs. These results demonstrate that, despite being inactive, the fungal DHO-like domain has a conserved structural function. We propose a model that sets the DHO and ATC complex as the central element in the architecture of CAD.

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