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Laboratory Of Applied Biological Chemistry Department Of Synthetic Chemistry And Biological Chemistr | 論文
- Production of (S)-2-Chloropropionate by Asymmetric Reduction of 2-Chloroacrylate with 2-Haloacrylate Reductase Coupled with Glucose Dehydrogenase(BIOCHEMICAL ENGINEERING)
- Serine Racemase with Catalytically Active Lysinoalanyl Residue
- Gene Cloning, Purification, and Characterization of Two Cyanobacterial NifS Homologs Driving Iron-Sulfur Cluster Formation
- Kinetic and Mutational Studies of Three NifS Homologs from Esherichia coli: Mechanistic Difference between L-Cysteine Desulfurase and L-Selenocysteine Lyase Reactions
- Construction of an Autonomously Replicating Plasmid in n-Alkane-Assimilating Yeast, Candida tropicalis
- Characterization of a Dicarboxylic Acid-Producing Mutant of the Yeast Candida tropicalis
- X-Ray Structure of a Reaction Intermediate of L-2-Haloacid Dehalogenase with L-2-Chloropropionamid
- Primary Structure and Catalytic Properties of a Cold-active Esterase from a Psychrotroph, Acinetobacter sp. Strain No.6. Isolated from Siberian Soil(Biochemistry & Molecular Biology)
- Cold-Active Lipolytic Activity of Psychrotrophic Acinetobacter sp. Strain No.6
- Thioredoxin Reductase 1 Is Important for Selenoprotein Biosynthesis in HeLa Cells
- Enzymatic Synthesis of L-Pipecolic Acid by Δ^1-Piperideine-2-carboxylate Reductase from Pseudomonas putida
- Selenoprotein Biosynthesis and Selenium-Specific Enzymes (特集1:若手が拓く微量元素研究の最前線)
- Protein Interaction between Selenophosphate Synthetase and IscS
- RNAi-mediated knock down of mammalian selenocysteine lyase
- A New Family of NAD(P)H-Dependent Oxidoreductases Distinct from Conventional Rossmann-Fold Proteins
- Network of Protein-Protein Interactions among Iron-Sulfur Cluster Assembly Proteins in Escherichia coli
- Structure of External Aldimine of Escherichia coli CsdB, an IscS/NifS Homolog: Implications for Its Specificity toward Selenocysteine
- Screening and identification of a protein interacting with IscU
- 2-Haloacrylate hydratase is a bifunctional enzyme with NADH-dependent FAD reductase activity
- Possible role of red blood cells in selenocysteine metabolism