4dbf Citations

Crystal structures of Cg1458 reveal a catalytic lid domain and a common catalytic mechanism for the FAH family.

Biochem J 449 51-60 (2013)
Cited: 14 times
EuropePMC logo PMID: 23046410

Abstract

Cg1458 was recently characterized as a novel soluble oxaloacetate decarboxylase. However, sequence alignment identified that Cg1458 has no similarity with other oxaloacetate decarboxylases and instead belongs to the FAH (fumarylacetoacetate hydrolase) family. Differences in the function of Cg1458 and other FAH proteins may suggest a different catalytic mechanism. To help elucidate the catalytic mechanism of Cg1458, crystal structures of Cg1458 in both the open and closed conformations have been determined for the first time up to a resolution of 1.9 Å (1 Å=0.1 nm) and 2.0 Å respectively. Comparison of both structures and detailed biochemical studies confirmed the presence of a catalytic lid domain which is missing in the native enzyme structure. In this lid domain, a glutamic acid-histidine dyad was found to be critical in mediating enzymatic catalysis. On the basis of structural modelling and comparison, as well as large-scale sequence alignment studies, we further determined that the catalytic mechanism of Cg1458 is actually through a glutamic acid-histidine-water triad, and this catalytic triad is common among FAH family proteins that catalyse the cleavage of the C-C bond of the substrate. Two sequence motifs, HxxE and Hxx…xxE have been identified as the basis for this mechanism.

Articles - 4dbf mentioned but not cited (2)

  1. Structural basis for the bi-functionality of human oxaloacetate decarboxylase FAHD1. Weiss AKH, Naschberger A, Loeffler JR, Gstach H, Bowler MW, Holzknecht M, Cappuccio E, Pittl A, Etemad S, Dunzendorfer-Matt T, Scheffzek K, Liedl KR, Jansen-Dürr P. Biochem J 475 3561-3576 (2018)
  2. Crystal Structures of Apo and Liganded 4-Oxalocrotonate Decarboxylase Uncover a Structural Basis for the Metal-Assisted Decarboxylation of a Vinylogous β-Keto Acid. Guimarães SL, Coitinho JB, Costa DM, Araújo SS, Whitman CP, Nagem RA. Biochemistry 55 2632-2645 (2016)


Reviews citing this publication (2)

  1. The fumarylacetoacetate hydrolase (FAH) superfamily of enzymes: multifunctional enzymes from microbes to mitochondria. Weiss AKH, Loeffler JR, Liedl KR, Gstach H, Jansen-Dürr P. Biochem Soc Trans 46 295-309 (2018)
  2. Regulation of cellular senescence by eukaryotic members of the FAH superfamily - A role in calcium homeostasis? Weiss AKH, Albertini E, Holzknecht M, Cappuccio E, Dorigatti I, Krahbichler A, Damisch E, Gstach H, Jansen-Dürr P. Mech Ageing Dev 190 111284 (2020)

Articles citing this publication (10)