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  1. 19 Ιαν 2021 · Uracil has a molar mass of 112.08676 g/mol and a melting point of 335 °C. It may occur as a component of a nucleoside (nucleobase + sugar deoxyribose or ribose) or of a nucleotide (nucleoside with phosphate groups). It is also one of the five primary (canonical) nucleobases in nucleic acids.

  2. en.wikipedia.org › wiki › UracilUracil - Wikipedia

    Uracil (/ ˈjʊərəsɪl /) (symbol U or Ura) is one of the four nucleotide bases in the nucleic acid RNA. The others are adenine (A), cytosine (C), and guanine (G). In RNA, uracil binds to adenine via two hydrogen bonds. In DNA, the uracil nucleobase is replaced by thymine (T). Uracil is a demethylated form of thymine.

  3. Uracil, a colourless, crystalline organic compound of the pyrimidine family that occurs as a component of ribonucleic acid (RNA), a molecule involved in the transmission of hereditary characteristics. The RNA molecule consists of a sequence of nucleotides, each containing a five-carbon sugar.

  4. 6 ημέρες πριν · Uracil (U) is one of the four nucleotide bases in RNA, with the other three being adenine (A), cytosine (C) and guanine (G). In RNA, uracil pairs with adenine. In a DNA molecule, the nucleotide thymine (T) is used in place of uracil.

  5. Uracil is a common and naturally occurring pyrimidine nucleobase in which the pyrimidine ring is substituted with two oxo groups at positions 2 and 4. Found in RNA, it base pairs with adenine and replaces thymine during DNA transcription.

  6. Definition. Uracil is a nitrogenous base that is one of the key components of RNA. It pairs with adenine during the process of transcription, playing a crucial role in the synthesis of proteins from genetic information. Unlike DNA, which contains thymine, RNA uses uracil, contributing to the unique structure and function of RNA molecules.

  7. The structure of uracil consists of a six-membered ring containing two nitrogen atoms, and its chemical formula is C4H4N2O2. Uracil is involved in the regulation of gene expression through its role in mRNA and its participation in RNA splicing.

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