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L-Ribose Fischer Projection. Ribose is a simple sugar and carbohydrate with molecular formula C 5 H 10 O 5 and the linear-form composition H−(C=O)−(CHOH) 4 −H. The naturally occurring form, d-ribose, is a component of the ribonucleotides from which RNA is built, and so this compound is necessary for coding, decoding, regulation and expression of genes.
D-Ribose pyranase is an enzyme that catalyzes the interconversion of β-D-ribopyranose and β-D-ribofuranose. [1] This enzyme is an isomerase that has only been found in bacteria and viruses . It has two known functions of helping transport ribose into cells and producing β- D -ribofuranose, which can later be used to make ribose 5-phosphate ...
The systematic name of this enzyme class is ADP-D-ribosyl-[dinitrogen reductase] ADP-ribosylhydrolase. Other names in common use include azoferredoxin glycosidase , azoferredoxin-activating enzymes , dinitrogenase reductase-activating glycohydrolase , and ADP-ribosyl glycohydrolase .
ATP + d-ribose ⇌ ADP + d-ribose 5-phosphate. Thus, the two substrates of this enzyme are ATP and d-ribose, whereas its two products are ADP and d-ribose 5-phosphate. The systematic name of this enzyme class is ATP: d-ribose 5-phosphotransferase. Other names in common use include deoxyribokinase, ribokinase (phosphorylating), and d-ribokinase.
Nicotinamide mononucleotide ("NMN" and "β-NMN") is a nucleotide derived from ribose, nicotinamide, nicotinamide riboside and niacin. [1] In humans, several enzymes use NMN to generate nicotinamide adenine dinucleotide (NADH). [1]
Alpha-D-ribose 1-methylphosphonate 5-triphosphate diphosphatase (EC 3.6.1.63, phnM (gene)) is an enzyme with systematic name alpha-D-ribose-1-methylphosphonate-5-triphosphate diphosphohydrolase. [1] This enzyme catalyses the following chemical reaction
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