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An iron (II) dependent oxygenase performs the last missing step of plant lysine catabolism
- Source :
- Thompson, M G, Blake-Hedges, J M, Pereira, J H, Hangasky, J A, Belcher, M S, Moore, W M, Barajas, J F, Cruz-Morales, P, Washington, L J, Haushalter, R W, Eiben, C B, Liu, Y, Skyrud, W, Benites, V T, Barnum, T P, Baidoo, E E K, Scheller, H V, Marletta, M A, Shih, P M, Adams, P D & Keasling, J D 2020, ' An iron (II) dependent oxygenase performs the last missing step of plant lysine catabolism ', Nature Communications, vol. 11, no. 1, 2931 . https://doi.org/10.1038/s41467-020-16815-3, Nature Communications, Vol 11, Iss 1, Pp 1-10 (2020), Nature Communications, Nature communications, vol 11, iss 1
- Publication Year :
- 2020
-
Abstract
- Despite intensive study, plant lysine catabolism beyond the 2-oxoadipate (2OA) intermediate remains unvalidated. Recently we described a missing step in the D-lysine catabolism of Pseudomonas putida in which 2OA is converted to D-2-hydroxyglutarate (2HG) via hydroxyglutarate synthase (HglS), a DUF1338 family protein. Here we solve the structure of HglS to 1.1 Å resolution in substrate-free form and in complex with 2OA. We propose a successive decarboxylation and intramolecular hydroxylation mechanism forming 2HG in a Fe(II)- and O2-dependent manner. Specificity is mediated by a single arginine, highly conserved across most DUF1338 proteins. An Arabidopsis thaliana HglS homolog coexpresses with known lysine catabolism enzymes, and mutants show phenotypes consistent with disrupted lysine catabolism. Structural and biochemical analysis of Oryza sativa homolog FLO7 reveals identical activity to HglS despite low sequence identity. Our results suggest DUF1338-containing enzymes catalyze the same biochemical reaction, exerting the same physiological function across bacteria and eukaryotes.<br />Hydroxyglutarate synthase (HglS) converts 2-oxoadipate to D-2- hydroxyglutarate during lysine catabolism in bacteria. Here the authors use structural and biochemical approaches to show that HglS acts via successive decarboxylation and intramolecular hydroxylation and that homologous enzymes catalyze the final step of lysine catabolism in plants.
- Subjects :
- 0106 biological sciences
0301 basic medicine
Oxygenase
Lysine
Mutant
Arabidopsis
General Physics and Astronomy
01 natural sciences
Biochemistry
Hydroxylation
chemistry.chemical_compound
Arabidopsis thaliana
lcsh:Science
Essential amino acid
chemistry.chemical_classification
0303 health sciences
Multidisciplinary
biology
ATP synthase
food and beverages
Pseudomonas putida
Enzyme mechanisms
Oxygenases
Structural biology
Protein family
1.1 Normal biological development and functioning
Iron
Science
complex mixtures
General Biochemistry, Genetics and Molecular Biology
Article
03 medical and health sciences
Underpinning research
030304 developmental biology
Catabolism
Oryza
General Chemistry
biology.organism_classification
030104 developmental biology
Enzyme
chemistry
biology.protein
bacteria
lcsh:Q
Plant sciences
010606 plant biology & botany
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Thompson, M G, Blake-Hedges, J M, Pereira, J H, Hangasky, J A, Belcher, M S, Moore, W M, Barajas, J F, Cruz-Morales, P, Washington, L J, Haushalter, R W, Eiben, C B, Liu, Y, Skyrud, W, Benites, V T, Barnum, T P, Baidoo, E E K, Scheller, H V, Marletta, M A, Shih, P M, Adams, P D & Keasling, J D 2020, ' An iron (II) dependent oxygenase performs the last missing step of plant lysine catabolism ', Nature Communications, vol. 11, no. 1, 2931 . https://doi.org/10.1038/s41467-020-16815-3, Nature Communications, Vol 11, Iss 1, Pp 1-10 (2020), Nature Communications, Nature communications, vol 11, iss 1
- Accession number :
- edsair.doi.dedup.....19d25b9f0ff3e8f1b5538f7cd43c4598
- Full Text :
- https://doi.org/10.1038/s41467-020-16815-3