By F. F. Nord
Advances in Enzymology and similar parts of Molecular Biology is a seminal sequence within the box of biochemistry, delivering researchers entry to authoritative studies of the most recent discoveries in all components of enzymology and molecular biology. those landmark volumes date again to 1941, delivering an unequalled view of the historic improvement of enzymology. The sequence bargains researchers the most recent realizing of enzymes, their mechanisms, reactions and evolution, roles in advanced organic strategy, and their software in either the laboratory and undefined. every one quantity within the sequence good points contributions via best pioneers and investigators within the box from around the globe. All articles are rigorously edited to make sure thoroughness, caliber, and readability.
With its wide variety of issues and lengthy old pedigree, Advances in Enzymology and similar parts of Molecular Biology can be utilized not just via scholars and researchers in molecular biology, biochemistry, and enzymology, but additionally via any scientist attracted to the invention of an enzyme, its homes, and its purposes
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Additional info for Advances in Enzymology and Related Areas of Molecular Biology, Volume 7
Conway and O’Malley support the ionic exchange idea (13) and suggest, without making direct tests, that pyruvic acid is the acid responsible for the hydrogen ions. Hevesy and Nielsen (30) have measured the distribution of radioactive potassium, both inward or outward, and found considerable transfer, but the rates seem low compared with those found by Rothstein and Haege (74). Hevesy and Nielsen made no observations in the first ten minutes of fermentation, and it is difficult to utilize their results in this connection.
And Stern, J . , J. Cellular Comp. , 19, 109 (1942). 24. Gerard, R. , BioE. , 60, 245 (1931). 25. Guldberg, C. , J. prakt. , 127,69 (1879). 26. , J. Gen. , 22, 567 (1934). 27. Harcourt, A. , Trans. Roy. London, 156, 193 (1866). 28. , and Rougliton, F. J. , J. , 62, 232 (1927). 29. Heilbrunn, L. , The Colloid Chemistry of Protoplasm. Borntraeger, Berlin, 1928. 30. , Acta Physzol. , 2, 347 (1941). 31. Hill, A. , Proc. Roy. London, B104,39 (1928). 32. Hitchcock, D. , Physical Chemistry oj Cells and Tissues.
Throughout there is lack of direct proof of the presence of glycogen as shown by the negative direct tests of Mirski and Wertheimer (57) and the same authors note the early formation of esters with phosphate, that is, within one or 28 S. C . BROOKS two minutes. This siiggests that phobpliorylatioii is the first step followed by the progress of reactions, one leading to a polyose, possibly glycogen, which would liberate phosphate, and to another reaction, the phosphorylative breakdown of glucose.