By Alton Meister
Advances in Enzymology and comparable parts of Molecular Biology is a seminal sequence within the box of biochemistry, providing researchers entry to authoritative experiences of the newest discoveries in all parts of enzymology and molecular biology. those landmark volumes date again to 1941, supplying an unequalled view of the old improvement of enzymology. The sequence bargains researchers the newest knowing of enzymes, their mechanisms, reactions and evolution, roles in advanced organic technique, and their program in either the laboratory and undefined. each one quantity within the sequence positive factors contributions through major pioneers and investigators within the box from all over the world. All articles are conscientiously edited to make sure thoroughness, caliber, and clarity.
With its wide variety of issues and lengthy old pedigree, Advances in Enzymology and comparable parts of Molecular Biology can be utilized not just by means of scholars and researchers in molecular biology, biochemistry, and enzymology, but in addition via any scientist attracted to the invention of an enzyme, its homes, and its functions.
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Additional resources for Advances in Enzymology and Related Areas of Molecular Biology, Volume 12
The primary reactions by which COz is fixed will be considered in some detail. I t is very important that the primary reactions be recognized and differentiated from the secondary reactions, because the detailed pathway whereby C 0 2enters numerous compounds can be best ascertained if we know tlhe possible sources (the primary products) which first acquire the COr. Likewise it is extremely important that all the details of each primary reaction be determined. The immediate reactants (not the over-all picture that we now have in most cases), the enzymes, coenzymes, sources of energy for driving the reactions, and the kinetics need to be elucidated.
62. Waters, W. , Chemistry of Free Radicals. Oxford, 1948. 63. , Untersuchungen uber die Assimilation der Kohlensdure. Springer, Berlin, 1918. 64. Wood, H. , and Werkman, H. , Biochem. , 30, 48 (1936). Addendum Since this article went to press Ochoa (a) has stated, in a footnote to his discussion of the biological function of COZfixation, that the reducing properties of illuminated chloroplast preparations have been coupled with two coenzyme systems. Small amounts of bmalate could be formed from pyruvate and COz in the presence of T P N and purified malic enzyme.
Yet the presence of hydrogen acceptors in the plant was clear from the very first experiments. The more recent experiments with the “methemoglobin-reducing factor” seem to point to a hydrogen acceptor which it may be possible to characterize. When cytochrome f was found in the green plant it was thought possible at first that it might be a natural H acceptor for the chloroplast reaction. But, as mentioned previously, the potential lies 2 halfway between the effective reagent, ferric oxalate, and the 0 electrode.