1. PENTOSE PHOSPHATE CYCLE
81
66. P. W. Hochachka, J. M. Teal, and M. Telford, Can. J. Biochem. and Physiol.
40, 1043 (1962).
67. Ν. E. Tolbert and L. P. Zill, Arch. Biochem. Biophys. 50, 392 (1954).
68. V. Moses, /. Gen. Microbiol 20, 184 (1959).
69. J.-P. Aubert, G. Milhaud, and J. Millet, Compt. rend. acad. sei. 242, 2059
(1956).
70. G. Richter, Naturwissenschaften 46, 604 (1959).
71. J. Μ. Earl and M. Gibbs, Phnt Physiol. 30, iv (1955).
72. C. E. Wenner, J. H. Hackney, and F. Moliterno, Cancer Research 18, 1105
(1958).
73. D. E. Koshland, Jr., and F. H. Westheimer, /. Am. Chem. Soc. 72, 3383
(1950).
74. O. Warburg and W. Christian, Biochem. Z. 254, 438 (1932).
75. B. Axelrod, in "Metabolic Pathways" (D. M. Greenberg, ed.), Vol. I, p. 98.
Academic Press, New York, 1960.
76. S. Tewfik and P. K. Stumpf, /. Biol. Chem. 192, 519 (1951).
77. M. Gibbs, Nature 170, 164 (1952).
78. D. I. Arnon, Science 116, 635 (1952).
79. R. H. Hageman and D. I. Arnon, Arch. Biochem. Biophys. 57, 421 (1955).
80. M. Gibbs, in "Methods in Enzymology" (S. P. Colowick and N. O. Kaplan,
eds.), Vol. I, p. 411. Academic Press, New York, 1955.
81. B. Axelrod, R. S. Bandurski, C. M. Greiner, and R. Jang, /. Biol Chem. 202,
619 (1953).
82. D. I. Arnon, L. L. Rosenberg, and F. R. Whatley, Nature 173, 1132 (1954).
83. C. A. Fewson, M. Al-Hafidh, and M. Gibbs, Plant Physiol 37, 402 (1962).
84. P. A. Marks, A. Szeinberg, and J. Banks, /. Biol. Chem. 236, 10 (1961).
85. G. Richter, Biochim. et Biophys. Acta 48, 606 (1961).
86. Κ. N. Mehrotra, Comp. Biochem. Physiol. 3, 184 (1961).
87. R. M. Smillie, N. Rigopoulos, and H. Kelley, Biochim. et Biophys. Acta 56,
612 (1962).
88. A. Peterkofsky and E. Racker, Phnt Physiol. 36, 409 (1961).
89. K. Yamada and N. Shimazono, Biochim. et Biophys. Acta 54, 205 (1961).
90. K. Paigen and C. E. Wenner, Arch. Biochem. Biophys. 97, 213 (1962).
91. Μ. B. Allen, D. I. Arnon, J. B. Capindale, F. R. Whatley, and L. J. Durham.
J. Am. Chem. Soc. 77, 4149 (1955).
92. U. Heber, Ζ. Naturforsch. 15b, 95 (1960).
93. C. R. Stocking, Phnt Physiol 34, 56 (1959).
94. R. M. Smillie and R. C. Fuller, Plant Physiol. 34, 651 (1959).
95. U. Heber, Ν. G. Pon, and M. Heber, Phnt Physiol. 38, 355 (1963).
96. B. Bloom, M. R. Stetten, and D. Stetten, Jr., /. Biol Chem. 204, 681 (1953).
97. B. Bloom and D. Stetten, Jr., /. Am. Chem. Soc. 75, 5446 (1953).
98. S. Abraham, P. F. Hirsch, and I. L. Chaikoff, /. Biol. Chem. 211, 31 (1954).
99. E. C. Heath and H. Koffler, J. Bacteriol. 71, 174 (1956).
100. K. F. Lewis, H. J. Blumenthal, R. S. Weinrach, and S. Weinhouse, J. Biol.
Chem. 216, 273 (1955).
101. E. A. Dawes and W. H. Holms, Biochim. et Biophys. Acta 29, 82 (1958).
102. J. A. Müntz and J. R. Murphy, J. Biol. Chem. 224, 971 (1957).
103. C. E. Wenner and S. Weinhouse, J. Biol Chem. 222, 399 (1956).
104. C. H. Wang and J. K. Krackov, J. Biol. Chem. 237, 3614 (1962).
105. S. Korkes, Ann. Rev. Biochem. 25, 685 (1956).
106. H. G. Wood, Physiol Revs. 35, 841 (1955).
81
66. P. W. Hochachka, J. M. Teal, and M. Telford, Can. J. Biochem. and Physiol.
40, 1043 (1962).
67. Ν. E. Tolbert and L. P. Zill, Arch. Biochem. Biophys. 50, 392 (1954).
68. V. Moses, /. Gen. Microbiol 20, 184 (1959).
69. J.-P. Aubert, G. Milhaud, and J. Millet, Compt. rend. acad. sei. 242, 2059
(1956).
70. G. Richter, Naturwissenschaften 46, 604 (1959).
71. J. Μ. Earl and M. Gibbs, Phnt Physiol. 30, iv (1955).
72. C. E. Wenner, J. H. Hackney, and F. Moliterno, Cancer Research 18, 1105
(1958).
73. D. E. Koshland, Jr., and F. H. Westheimer, /. Am. Chem. Soc. 72, 3383
(1950).
74. O. Warburg and W. Christian, Biochem. Z. 254, 438 (1932).
75. B. Axelrod, in "Metabolic Pathways" (D. M. Greenberg, ed.), Vol. I, p. 98.
Academic Press, New York, 1960.
76. S. Tewfik and P. K. Stumpf, /. Biol. Chem. 192, 519 (1951).
77. M. Gibbs, Nature 170, 164 (1952).
78. D. I. Arnon, Science 116, 635 (1952).
79. R. H. Hageman and D. I. Arnon, Arch. Biochem. Biophys. 57, 421 (1955).
80. M. Gibbs, in "Methods in Enzymology" (S. P. Colowick and N. O. Kaplan,
eds.), Vol. I, p. 411. Academic Press, New York, 1955.
81. B. Axelrod, R. S. Bandurski, C. M. Greiner, and R. Jang, /. Biol Chem. 202,
619 (1953).
82. D. I. Arnon, L. L. Rosenberg, and F. R. Whatley, Nature 173, 1132 (1954).
83. C. A. Fewson, M. Al-Hafidh, and M. Gibbs, Plant Physiol 37, 402 (1962).
84. P. A. Marks, A. Szeinberg, and J. Banks, /. Biol. Chem. 236, 10 (1961).
85. G. Richter, Biochim. et Biophys. Acta 48, 606 (1961).
86. Κ. N. Mehrotra, Comp. Biochem. Physiol. 3, 184 (1961).
87. R. M. Smillie, N. Rigopoulos, and H. Kelley, Biochim. et Biophys. Acta 56,
612 (1962).
88. A. Peterkofsky and E. Racker, Phnt Physiol. 36, 409 (1961).
89. K. Yamada and N. Shimazono, Biochim. et Biophys. Acta 54, 205 (1961).
90. K. Paigen and C. E. Wenner, Arch. Biochem. Biophys. 97, 213 (1962).
91. Μ. B. Allen, D. I. Arnon, J. B. Capindale, F. R. Whatley, and L. J. Durham.
J. Am. Chem. Soc. 77, 4149 (1955).
92. U. Heber, Ζ. Naturforsch. 15b, 95 (1960).
93. C. R. Stocking, Phnt Physiol 34, 56 (1959).
94. R. M. Smillie and R. C. Fuller, Plant Physiol. 34, 651 (1959).
95. U. Heber, Ν. G. Pon, and M. Heber, Phnt Physiol. 38, 355 (1963).
96. B. Bloom, M. R. Stetten, and D. Stetten, Jr., /. Biol Chem. 204, 681 (1953).
97. B. Bloom and D. Stetten, Jr., /. Am. Chem. Soc. 75, 5446 (1953).
98. S. Abraham, P. F. Hirsch, and I. L. Chaikoff, /. Biol. Chem. 211, 31 (1954).
99. E. C. Heath and H. Koffler, J. Bacteriol. 71, 174 (1956).
100. K. F. Lewis, H. J. Blumenthal, R. S. Weinrach, and S. Weinhouse, J. Biol.
Chem. 216, 273 (1955).
101. E. A. Dawes and W. H. Holms, Biochim. et Biophys. Acta 29, 82 (1958).
102. J. A. Müntz and J. R. Murphy, J. Biol. Chem. 224, 971 (1957).
103. C. E. Wenner and S. Weinhouse, J. Biol Chem. 222, 399 (1956).
104. C. H. Wang and J. K. Krackov, J. Biol. Chem. 237, 3614 (1962).
105. S. Korkes, Ann. Rev. Biochem. 25, 685 (1956).
106. H. G. Wood, Physiol Revs. 35, 841 (1955).
