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EC Number
BRENDA No.
Title
Journal
Volume
Pages
Year
Organism
PubMed ID
1.1.1.81
763559
A cytosolic pathway for the conversion of hydroxypyruvate to glycerate during photorespiration in Arabidopsis
Plant Cell
20
2848-2859
2008
Arabidopsis thaliana
18952776
1.1.1.81
763559
A cytosolic pathway for the conversion of hydroxypyruvate to glycerate during photorespiration in Arabidopsis
Plant Cell
20
2848-2859
2008
Arabidopsis thaliana Col-0
18952776
1.1.1.81
760546
Biochemical properties and phylogeny of hydroxypyruvate reductases from methanotrophic bacteria with different C1-assimilation pathways
Biochemistry (Moscow)
82
1295-1303
2017
Methylosinus trichosporium
29223156
1.1.1.81
760546
Biochemical properties and phylogeny of hydroxypyruvate reductases from methanotrophic bacteria with different C1-assimilation pathways
Biochemistry (Moscow)
82
1295-1303
2017
Methylotuvimicrobium alcaliphilum
29223156
1.1.1.81
760546
Biochemical properties and phylogeny of hydroxypyruvate reductases from methanotrophic bacteria with different C1-assimilation pathways
Biochemistry (Moscow)
82
1295-1303
2017
Methylococcus capsulatus
29223156
1.1.1.81
760546
Biochemical properties and phylogeny of hydroxypyruvate reductases from methanotrophic bacteria with different C1-assimilation pathways
Biochemistry (Moscow)
82
1295-1303
2017
Methylococcus capsulatus Bath
29223156
1.1.1.81
760546
Biochemical properties and phylogeny of hydroxypyruvate reductases from methanotrophic bacteria with different C1-assimilation pathways
Biochemistry (Moscow)
82
1295-1303
2017
Methylotuvimicrobium alcaliphilum 20Z
29223156
1.1.1.81
761180
Characterization of Arabidopsis thaliana hydroxyphenylpyruvate reductases in the tyrosine conversion pathway
Front. Plant Sci.
9
1305
2018
Arabidopsis thaliana
30233632
1.1.1.81
761180
Characterization of Arabidopsis thaliana hydroxyphenylpyruvate reductases in the tyrosine conversion pathway
Front. Plant Sci.
9
1305
2018
Arabidopsis thaliana Col-0
30233632
1.1.1.81
760598
Structural, biochemical, and evolutionary characterizations of glyoxylate/hydroxypyruvate reductases show their division into two distinct subfamilies
Biochemistry
57
963-977
2018
Sinorhizobium meliloti
29309127
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