By Paul D. Boyer, etc.

Content material: entrance disguise; The Enzymes: team move; Copyright web page; Contents; record of members; Preface; Contents of different Volumes; bankruptcy 1. Adenylyl move Reactions; bankruptcy 2. Uridine Diphosphoryl Glucose Pyrophosphorylase; bankruptcy three. Adenosine Diphosphoryl Glucose Pyrophosphorylase; bankruptcy four. The Adenosyltransferases; bankruptcy five. Acyl crew move (Acyl provider Protein); bankruptcy 6. Chemical foundation of organic Phosphoryl move; bankruptcy 7. Phosphofructokinase; bankruptcy eight. Adenylate Kinase; bankruptcy nine. Nucleoside Diphosphokinases; bankruptcy 10. 3-Phosphoglycerate Kinase. bankruptcy eleven. Pyruvate KinaseChapter 12. Creatine Kinase (Adenosine 5'-Triphosphate-Creatine Phosphotransferase); bankruptcy thirteen. Arginine Kinase and different Invertebrate Guanidino Kinases; bankruptcy 14. Glycerol and Glycerate Kinases; bankruptcy 15. Microbial Aspartokinases; bankruptcy sixteen. Protein Kinases; writer Index; topic Index

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Additional resources for The Enzymes, Vol VIII: Group Transfer, Part A (Nucleotidyl Transfer, Nucleosidyl Transfer, Acyl Transfer, Phosphoryl Transfer), 3rd Edition

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The second enzyme fraction, E,, is apparently concerned with transfer of the lipoyl group from El-lipoyl-AMP to the acceptor r-NH2-lysyl group of the a-ketoacid dehydrogenase. The intermediate role of lipoyl-AMP is further supported by the fact that synthetic lipoyl-AMP can replace ATP and lipoate in the overall reaction. In this case, both E, and E2 are required, suggesting that the El-lipoyl-AMP complex is an obligatory intermediate in the lipoyl transfer part of the reaction. Proteolytic degradation of the pyruvate and a-ketoglutarate dehydrogenase complexes containing bound 35S-lipoic acid led to the isolation of lipoyl-containing peptides having the common amino acid sequenceAsp-Nf-lipopyl-Lys (122) .

61, 131). 111. Biosynthesis of Phosphodiester Derivatives of Adenosine A. RNA SYNTHESIS During the last decade a vast literature has accumulated describing the isolation and properties of enzymes catalyzing the synthesis and degradation of polynucleotides. Since this work has been exhaustively reviewed in numerous articles, it is mentioned here only to draw attention to the fact that some of the reactions concerned with RNA metab132. R. Airth, W. C. Rhodes, and W. D. McElroy, BBA 27, 619 (1958).

Tatum, Proc. Not. Acad. Sci. U . S. 52,876 (1964). ' . Sakamoto, T. Suzuki, and K. Kurnhnshi, BBA 169, 520 112. K. Fujikawn, 1 (1968). 113. K. , Znt. Congr. Biochem. 6th, 1901, p. 37 (1963). 114. S. Tomino, M. Ynmada, H. Itoh. and K. Kurahashi, Biochemistry 6, 2552 (1967). 115. Itoh, M. Ynmada, S. Ionino. and K. Kurahashi, J . Biochem. ( T o k y o ) 64, 259 (1968). 116. M. Yamada. and K. Kurahashi, J . Biochem. ( T o k y o ) 63, 59 (1968). 117. L. Berg, L. 0. Frplholm, and S. G. Laland, BJ 96, 43 (1965).

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