Gene Identification and Characterization of 5-Formyl-3-Hydroxy-2-Methylpyridine 4-Carboxylic Acid 5-Dehydrogenase, an NAD+-Dependent Dismutase
Author:
Publisher
Oxford University Press (OUP)
Subject
Molecular Biology,Biochemistry,General Medicine
Link
http://academic.oup.com/jb/article-pdf/145/4/493/6441935/mvp007.pdf
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1. The nitrogen-fixing symbiotic bacteriumMesorhizobium lotihas and expresses the gene encoding pyridoxine 4-oxidase involved in the degradation of vitamin B6
2. Enzymes of vitamin B6 degradation. Purification and properties of 5-pyridoxic-acid oxygenase from Arthrobacter sp.
3. Identification of a new tetrameric pyridoxal 4-dehydrogenase as the second enzyme in the degradation pathway for pyridoxine in a nitrogen-fixing symbiotic bacterium, Mesorhizobium loti
4. 4-Pyridoxolactonase from a symbiotic nitrogen-fixing bacterium Mesorhizobium loti: Cloning, expression, and characterization
5. Gene Identification and Characterization of the Pyridoxine Degradative Enzyme 4-Pyridoxic Acid Dehydrogenase from the Nitrogen-fixing Symbiotic Bacterium Mesorhizobium loti MAFF303099
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2. Role of the Tyr270 residue in 2-methyl-3-hydroxypyridine-5-carboxylic acid oxygenase from Mesorhizobium loti;Journal of Bioscience and Bioengineering;2017-02
3. Crystal structure of 5-formyl-3-hydroxy-2-methylpyridine 4-carboxylic acid 5-dehydrogenase, an NAD+-dependent dismutase from Mesorhizobium loti;Biochemical and Biophysical Research Communications;2015-01
4. The mll6786 gene encodes a repressor protein controlling the degradation pathway for vitamin B6 in Mesorhizobium loti;FEMS Microbiology Letters;2012-02-14
5. Pyridoxal phosphate: Biosynthesis and catabolism;Biochimica et Biophysica Acta (BBA) - Proteins and Proteomics;2011-11
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