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A0A0P0W9L9 A0A0P0W9L9 Q0J3L2_ORYSJ Q0J3L2_ORYSJ TPK2 TPK2 Q10F62_ORYSJ Q10F62_ORYSJ OsJ_35490 OsJ_35490 TPK1 TPK1 TPK3 TPK3 THI1 THI1
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A0A0P0W9L9Os04g0381600 protein. (515 aa)
Q0J3L2_ORYSJOs08g0566000 protein. (609 aa)
TPK2Thiamine pyrophosphokinase 2; Catalyzes the phosphorylation of thiamine to thiamine pyrophosphate (TPP). TPP is an active cofactor for enzymes involved in glycolysis and energy production. Plant leaves require high levels of TPP for photosynthesis and carbohydrate metabolism (By similarity). (267 aa)
Q10F62_ORYSJThiamine biosynthesis protein thiC, putative, expressed. (639 aa)
OsJ_35490Probable thiamine biosynthetic bifunctional enzyme, chloroplastic; Essential for thiamine biosynthesis. Bifunctional enzyme that catalyzes the phosphorylation of hydroxymethylpyrimidine phosphate (HMP-P) to HMP-PP and condenses 4-methyl-5-(beta-hydroxyethyl)thiazole monophosphate (THZ-P) and 2-methyl-4-amino-5-hydroxymethyl pyrimidine pyrophosphate (HMP-PP) to form thiamine monophosphate (TMP). (548 aa)
TPK1Thiamine pyrophosphokinase 1; Catalyzes the phosphorylation of thiamine to thiamine pyrophosphate (TPP). TPP is an active cofactor for enzymes involved in glycolysis and energy production. Plant leaves require high levels of TPP for photosynthesis and carbohydrate metabolism (By similarity). (264 aa)
TPK3Thiamine pyrophosphokinase 3; Catalyzes the phosphorylation of thiamine to thiamine pyrophosphate (TPP). TPP is an active cofactor for enzymes involved in glycolysis and energy production. Plant leaves require high levels of TPP for photosynthesis and carbohydrate metabolism (By similarity). (267 aa)
THI1Thiamine thiazole synthase, chloroplastic; Involved in biosynthesis of the thiamine precursor thiazole. Catalyzes the conversion of NAD and glycine to adenosine diphosphate 5- (2-hydroxyethyl)-4-methylthiazole-2-carboxylic acid (ADT), an adenylated thiazole intermediate. The reaction includes an iron- dependent sulfide transfer from a conserved cysteine residue of the protein to a thiazole intermediate. The enzyme can only undergo a single turnover, which suggests it is a suicide enzyme. May have additional roles in adaptation to various stress conditions and in DNA damage tolerance; B [...] (355 aa)
Your Current Organism:
Oryza sativa Japonica
NCBI taxonomy Id: 39947
Other names: Japanese rice, Japonica rice, O. sativa Japonica Group, Oryza sativa (japonica cultivar-group), Oryza sativa Japonica Group, Oryza sativa subsp. japonica
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