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Reaction biosynthesis

The present volume, the thirty-fourth in the series, surveys research on organic reaction mechanisms described in the literature dated December 1997 to November 1998. In order to limit the size of the volume, we must necessarily exclude or restrict overlap with other publications which review specialist areas (e.g. photochemical reactions, biosynthesis, electrochemistry, organometallic chemistry, surface chemistry and heterogeneous catalysis). In order to minimize duplication, while ensuring a comprehensive coverage, the Editors conduct a survey of all relevant literature and allocate publications to appropriate chapters. While a particular reference may be allocated to more than one chapter, we do assume that readers will be aware of the alternative chapters to which a borderline topic of interest may have been preferentially assigned. [Pg.678]

Biological Reactions. Biosynthesis and catabolism of biological molecules (amino acids, carbohydrates, lipids, nucleic acids, peptides/proteins), metabolic cycles, biological catalysis and kinetics, mechanisms, organic and inorganic cofactors. [Pg.482]

Humus formation Internal Direct Indirect Production of gut enzymes that favor the condensation reactions Biosynthesis of waxes, etc. Production of enzymes that favor humification by gut symbionts... [Pg.4151]

The third section is devoted to various aspects of biosynthesis, turnover, and function of lipids in the central nervous system, such as metabolism of polyenoic fatty acids, base-exchange reactions, biosynthesis of complex lipids, and the latest progress in phos-phatidylinositol biochemistry. In addition papers on the implications of lipids in transmitter release and in receptors are included. [Pg.651]

Pandya, 1969 Abraham, 1969 Dave, 1969). There Is now sufficient evidence to show a close correspondence between the rates of enzymatic reactions, biosynthesis of the major metabolites and the rate of development. All these evidences provide an experimental basis for the evaluation of metabolon... [Pg.311]


See other pages where Reaction biosynthesis is mentioned: [Pg.43]    [Pg.185]    [Pg.190]    [Pg.3912]    [Pg.7]    [Pg.51]    [Pg.91]    [Pg.384]    [Pg.384]   
See also in sourсe #XX -- [ Pg.390 ]




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