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Titlebook: Chemistry of Nucleosides and Nucleotides; Volume 1 Leroy B. Townsend Book 1988 Plenum Press, New York 1988 Nucleotide.Purine.Pyrimidine.che

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Book 1988cinal chemists, medicinal organic chemists, organic chemists, carbohydrate chemists, physical chemists, and biological chemists in mind. However, because of the tremendous recent interest in this research area owing to the biological and chemotherapeutic evaluation of nucleosides and nucleotides as
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https://doi.org/10.1007/978-3-031-66192-1fying the naturally occurring nucleosides and their metabolites and in an understanding of the biochemical and enzymatic reactions and pathways. Discoveries made in the field of purine nucleoside and nucleotide chemistry have contributed substantially to a better understanding of biology at the mole
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Synthesis and Reaction of Pyrimidine Nucleosides, cell division. The genetic information, the sequence of four nucleobases, adenine (A), guanine (G), cytosine (C), and thymine (T) of the DNA strands, are transcribed to RNAs (messenger RNA, mRNA). These are then translated to furnish specific proteins coded by the mRNA, on the system called polysom
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Synthesis and Properties of Purine Nucleosides and Nucleotides,cleoside, guanosine, by E. Schulze and E. Brosshard in 1885. Subsequently, other naturally occurring purine nucleosides and nucleotides were isolated and characterized as the degradation products of ribonucleic acids (RNAs) and deoxyribonucleic acids (DNAs). The biochemical significance of nucleosid
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Synthesis and Properties of Oligonucleotides,s of chemical synthesis of polynucleotides would make nucleic acids more accessible than synthetic polypeptides” seems to have been realized by improvements in the solid-phase synthesis of DNA fragments. A short review, written in 1982, only covers early developments in the syntheses of genes.. DNA
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