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Titlebook: Ring Nitrogen and Key Biomolecules; The Biochemistry of E. G. Brown Book 1998 The Kluwer Academic Publishers 1998 ATP.Coenzym.Nucleotide.P

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发表于 2025-3-21 18:13:08 | 显示全部楼层 |阅读模式
书目名称Ring Nitrogen and Key Biomolecules
副标题The Biochemistry of
编辑E. G. Brown
视频video
图书封面Titlebook: Ring Nitrogen and Key Biomolecules; The Biochemistry of  E. G. Brown Book 1998 The Kluwer Academic Publishers 1998 ATP.Coenzym.Nucleotide.P
描述The nitrogen-containing ring structures are at the hub ofmetabolism and include ATP, nucleic acids, many coenzymes, metabolicregulators and integrators such as adenosine and GTP, signallingcompounds such as cyclic nucleotides and plant cytokinins andbiochemically functional pigmets of which haemoglobin, the cytochromesand chlorophyll are examples. .This important book collates and integrates current knowledge of allthe biologically important N-heterocyclic compounds, covering therelationship between their chemical structures and physiologicalfunctions within this key group of compounds. Few biochemical reactionsequences do not involve one of these compounds as a substrate,product or coenzyme and a full understanding of the interrelationshipbetween their structure and function is vital for all those woorkingin the field of biochemistry. .Professor Eric Brown who has a huge wealth of experience in teachingand research on these compounds has written a very comprehensible andthorough book which will be of great value for advanced students andresearchers in biochemistry and those at the interfacing subject areasof chemistry, biology and pharmacology including all those employed inresear
出版日期Book 1998
关键词ATP; Coenzym; Nucleotide; Purine; Pyrimidine; biochemistry; metabolism
版次1
doihttps://doi.org/10.1007/978-94-011-4906-8
isbn_softcover978-94-010-6058-5
isbn_ebook978-94-011-4906-8
copyrightThe Kluwer Academic Publishers 1998
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发表于 2025-3-21 23:38:39 | 显示全部楼层
https://doi.org/10.1007/978-94-011-4906-8ATP; Coenzym; Nucleotide; Purine; Pyrimidine; biochemistry; metabolism
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978-94-010-6058-5The Kluwer Academic Publishers 1998
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Pyrroles and tetrapyrroles, including porphyrins,ndamental importance of which the porphyrins, such as haem and chlorophyll, are examples. To appreciate fully the biochemistry of the tetrapyrroles, some knowledge of the salient features of pyrrole chemistry helps and an outline is given below in Section 1.3.
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Pyrazoles, derivative was reported (Shinano and Kaya, 1957; Noe and Fowden, 1959). This was the amino acid β-pyrazol-1-yl-L-alanine (2) an isomer of histidine (3). Together with its γ-L-glutamyl peptide (4) it has been found in the seeds and seedlings of many species of the plant family Cucurbitaceae, to whic
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Pyridines,idine derivative from living tissue was by Johns (1885) who obtained crystalline samples of trigonelline (.-methylpyridinium-3-carboxylic acid; 1) from the plant . Biochemically however, the most important discovery concerning the natural occurrence and importance of pyridine derivatives can be trac
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Pyrimidines,rimidine to be isolated was in fact a plant secondary product, vicine (1). This pyrimidine glucoside was isolated from seeds of . by Ritthausen in 1870 and later from several other species of ., but it was not until more than eighty years later that its structure was elucidated (Bendich and Clements
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