4. ENERGY-RICH COMPOUNDS
169
103. F. P. W. Winteringham, P. M. Bridges, and G. C. Hellyer, Biochem. J. 59,
13 (1955).
104. B. Sacktor and D. G. Cochran, /. Biol. Chem. 226, 241 (1957).
105. C. Rey, Biochim. et Biophys. Ada 19, 300 (1956).
106. P. C. Caldwell, Biochem. J. 55, 458 (1953).
107. T. Saito, K. I. Arai, and T. Tanaka, Nature 181, 1127 (1958).
108. T. Saito and K. I. Arai, Nature 179, 820 (1957).
109. G. Schmidt, in "Phosphorus Metabolism" (W. D. McElroy and B. Glass,
eds.), Vol. I, p. 443. Johns Hopkins, Baltimore, Maryland, 1951.
110. A. Kornberg, S. R. Kornberg, and E. S. Simms, Biochim. et Biophys.
Ada
20, 215 (1956).
111. L. Liebermann, Ber. deut. ehem. Ges. 21, 598 (1888).
112. G. Schmidt and S. J. Thannhauser, /. Biol. Chem. 161, 83 (1945).
113. J. M. Wiame, Biochim. et Biophys. Ada 1, 234 (1947).
114. G. Schmidt, L. Hecht, and S. J. Thannhauser, J. Biol. Chem. 166, 775
(1946).
115. J. M. Wiame, J. Biol. Chem. 178, 919 (1949).
115a. S. P. Damle and P. S. Krishnan, Arch. Biochem. Biophys. 49, 58 (1954).
115b. K. K. Tewari and P. S. Krishnan, Arch. Biochem. Biophys. 82, 99 (1959).
116. E. Juni, M. D. Kamen, S. Spiegelman, and J. M. Wiame, Nature 160, 717
(1947).
117. E. Juni, M. D. Kamen, J. M. Reiner, and S. Spiegelman, Arch. Biochem. 18,
387 (1948).
118. B. J. Katchman and W. O. Fetty, J. Bacteriol. 69, 607 (1955).
119. T. V. Peters and W. Rieman, Anal. Chim. Ada 14, 131 (1956).
120. H. Deuel, J. Salms, and L. Anyas-Weisz, Heh. Chim. Ada 33, 2171 (1950).
121. J. P. Crowther, Nature 173, 486 (1954).
122. H. Mattenheimer, Z. physiol. Chem. 303, 125 (1956).
123. I. Mandl and C. Neuberg, in "Methods in Enzymology" (S. F. Colowick and
N. O. Kaplan, eds.), Vol. II, p. 577. Academic Press, New York, 1955.
124. A. Kornberg, /. Biol. Chem. 182, 779 (1950).
125. D. R. Briggs, /. Biol. Chem. 132, 261 (1940).
126. J. R. VanWazer and D. Campanella, J. Am. Chem. Soc. 72, 655 (1950).
127. B. Ingelman and H. Malmgren, Ada. Chem. Scand. 3, 157 (1947).
128. L. Michaelis, Cold Spring Harbor Symp. Quant. Biol. 12, 143 (1947).
128a. L. Lison, Arch. biol. (Liege) 46, 599 (1935).
128b. O. Necas, Exptl. Cell Research 14, 216 (1958).
128c. T. Caspersson and K. Brandt, Protoplasma 35, 507 (1941).
128d. S. Mudd, A. Yoshida, and M. Koike, /. Bacteriol 75, 224 (1958).
128e. D. D. Hickman and A. W. Frenkel, /. Biophys. Biochem. Cytol. 6, 277
(1959).
129. F. T. Kenney, S. P. Colowick, and E. Barbehenn, Arch. Biochem.
Biophys.
69, 617 (1957).
130. H. Mattenheimer, Z. physiol. Chem. 303, 107, 115 (1956).
131. I. Lieberman, /. Biol. Chem. 219, 307 (1956).
131a. S. R. Kornberg, I. R. Lehman, M. J. Bessman, E. S. Simms, and A. Kornberg, /. Biol. Chem. 233, 159 (1958).
131b. G. W. Rafter, Arch. Biochem. Biophys. 81, 238 (1959).
132. R. Jeener and J. Brächet, Enzymologia 11, 222 (1944).
169
103. F. P. W. Winteringham, P. M. Bridges, and G. C. Hellyer, Biochem. J. 59,
13 (1955).
104. B. Sacktor and D. G. Cochran, /. Biol. Chem. 226, 241 (1957).
105. C. Rey, Biochim. et Biophys. Ada 19, 300 (1956).
106. P. C. Caldwell, Biochem. J. 55, 458 (1953).
107. T. Saito, K. I. Arai, and T. Tanaka, Nature 181, 1127 (1958).
108. T. Saito and K. I. Arai, Nature 179, 820 (1957).
109. G. Schmidt, in "Phosphorus Metabolism" (W. D. McElroy and B. Glass,
eds.), Vol. I, p. 443. Johns Hopkins, Baltimore, Maryland, 1951.
110. A. Kornberg, S. R. Kornberg, and E. S. Simms, Biochim. et Biophys.
Ada
20, 215 (1956).
111. L. Liebermann, Ber. deut. ehem. Ges. 21, 598 (1888).
112. G. Schmidt and S. J. Thannhauser, /. Biol. Chem. 161, 83 (1945).
113. J. M. Wiame, Biochim. et Biophys. Ada 1, 234 (1947).
114. G. Schmidt, L. Hecht, and S. J. Thannhauser, J. Biol. Chem. 166, 775
(1946).
115. J. M. Wiame, J. Biol. Chem. 178, 919 (1949).
115a. S. P. Damle and P. S. Krishnan, Arch. Biochem. Biophys. 49, 58 (1954).
115b. K. K. Tewari and P. S. Krishnan, Arch. Biochem. Biophys. 82, 99 (1959).
116. E. Juni, M. D. Kamen, S. Spiegelman, and J. M. Wiame, Nature 160, 717
(1947).
117. E. Juni, M. D. Kamen, J. M. Reiner, and S. Spiegelman, Arch. Biochem. 18,
387 (1948).
118. B. J. Katchman and W. O. Fetty, J. Bacteriol. 69, 607 (1955).
119. T. V. Peters and W. Rieman, Anal. Chim. Ada 14, 131 (1956).
120. H. Deuel, J. Salms, and L. Anyas-Weisz, Heh. Chim. Ada 33, 2171 (1950).
121. J. P. Crowther, Nature 173, 486 (1954).
122. H. Mattenheimer, Z. physiol. Chem. 303, 125 (1956).
123. I. Mandl and C. Neuberg, in "Methods in Enzymology" (S. F. Colowick and
N. O. Kaplan, eds.), Vol. II, p. 577. Academic Press, New York, 1955.
124. A. Kornberg, /. Biol. Chem. 182, 779 (1950).
125. D. R. Briggs, /. Biol. Chem. 132, 261 (1940).
126. J. R. VanWazer and D. Campanella, J. Am. Chem. Soc. 72, 655 (1950).
127. B. Ingelman and H. Malmgren, Ada. Chem. Scand. 3, 157 (1947).
128. L. Michaelis, Cold Spring Harbor Symp. Quant. Biol. 12, 143 (1947).
128a. L. Lison, Arch. biol. (Liege) 46, 599 (1935).
128b. O. Necas, Exptl. Cell Research 14, 216 (1958).
128c. T. Caspersson and K. Brandt, Protoplasma 35, 507 (1941).
128d. S. Mudd, A. Yoshida, and M. Koike, /. Bacteriol 75, 224 (1958).
128e. D. D. Hickman and A. W. Frenkel, /. Biophys. Biochem. Cytol. 6, 277
(1959).
129. F. T. Kenney, S. P. Colowick, and E. Barbehenn, Arch. Biochem.
Biophys.
69, 617 (1957).
130. H. Mattenheimer, Z. physiol. Chem. 303, 107, 115 (1956).
131. I. Lieberman, /. Biol. Chem. 219, 307 (1956).
131a. S. R. Kornberg, I. R. Lehman, M. J. Bessman, E. S. Simms, and A. Kornberg, /. Biol. Chem. 233, 159 (1958).
131b. G. W. Rafter, Arch. Biochem. Biophys. 81, 238 (1959).
132. R. Jeener and J. Brächet, Enzymologia 11, 222 (1944).
