Comprehensive Natural Products Chemistry: 4 - Hardcover

Kelly, J.W.; Barton, D. H. R.; Barton, Sir; Nakanishi, Kaoji; Meth-Cohn, Otto

 
9780080431567: Comprehensive Natural Products Chemistry: 4

Inhaltsangabe

Hardbound. This volume covers the exciting advances made in the chemistry, biochemistry and molecular biology of amino acid, peptide and alkaloid biosynthesis. The fourteen chapters in this volume briefly introduce classical approaches to deciphering biosynthetic pathways, but largely focus on a synergistic approach, i.e. one applying both chemical and genetic methods to uncover the mysteries associated with the synthesis of some of the worlds most beautiful molecules. Two chapters review our current understanding of alkaloid biosynthesis, which provided much of the impetus for the growth of organic chemistry in the century. Two chapters are devoted to the biosynthesis of Heme prosthetic groups, which have attracted the attention of numerous chemists and biologists over the years. Five chapters focus on peptide and antibiotic biosynthesis, in keeping with the fantastic advances that have been made in understanding non-ribosomal peptide synthesis and the u

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Reseña del editor

Hardbound. This volume covers the exciting advances made in the chemistry, biochemistry and molecular biology of amino acid, peptide and alkaloid biosynthesis. The fourteen chapters in this volume briefly introduce classical approaches to deciphering biosynthetic pathways, but largely focus on a synergistic approach, i.e. one applying both chemical and genetic methods to uncover the mysteries associated with the synthesis of some of the worlds most beautiful molecules. Two chapters review our current understanding of alkaloid biosynthesis, which provided much of the impetus for the growth of organic chemistry in the century. Two chapters are devoted to the biosynthesis of Heme prosthetic groups, which have attracted the attention of numerous chemists and biologists over the years. Five chapters focus on peptide and antibiotic biosynthesis, in keeping with the fantastic advances that have been made in understanding non-ribosomal peptide synthesis and the u

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