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- Deoxyribose is a five-carbon sugar component of DNA123. It alternates with phosphate groups to form the “backbone” of the DNA polymer and binds to nitrogenous bases1. Deoxyribose is a five-membered ring found in DNA3. It has lost an oxygen molecule from one of the carbons in the ring3. Deoxyribose and its related compound, ribose, are the building blocks of the backbone chains in nucleic acids, better known as DNA and RNA4.Learn more:✕This summary was generated using AI based on multiple online sources. To view the original source information, use the "Learn more" links.Deoxyribose, five-carbon sugar component of DNA (q.v.; deoxyribonucleic acid), where it alternates with phosphate groups to form the “backbone” of the DNA polymer and binds to nitrogenous bases.www.britannica.com/science/deoxyriboseDeoxyribose is the five-carbon sugar molecule that helps form the phosphate backbone of DNA molecules. DNA, or deoxyribonucleic acidis a polymer formed of many nucleic acids. Each nucleic acid is composed of a deoxyribose molecule bound to both a phosphate group and either a purineor a pyrimidine.biologydictionary.net/deoxyribose/Deoxyribose can act as the backbone of DNA by substituting a phosphate group and a nucleic acid base on this ring, as shown in the diagram below. Deoxyribose Function Deoxyribose is a five-membered ring found in DNA. Deoxyribose has lost an oxygen molecule from one of the carbons in the ring, as seen in the diagram.www.vedantu.com/biology/deoxyriboseRibose and its related compound, deoxyribose, are the building blocks of the backbone chains in nucleic acids, better known as DNA and RNA.chem.libretexts.org/Bookshelves/Biological_Chemi…
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Deoxyribose - Wikipedia
Deoxyribose, or more precisely 2-deoxyribose, is a monosaccharide with idealized formula H−(C=O)−(CH2)−(CHOH)3−H. Its name indicates that it is a deoxy sugar, meaning that it is derived from the sugar ribose by loss of a hydroxy group. Discovered in 1929 by Phoebus Levene, deoxyribose is most … See more
Several isomers exist with the formula H−(C=O)−(CH2)−(CHOH)3−H, but in deoxyribose all the hydroxyl groups are on the same side in the Fischer projection. The term "2-deoxyribose" may refer to either of two See more
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Why deoxyribose for DNA and ribose for RNA?
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