9. COMPARATIVE BIOCHEMISTRY OF GLYCOLYSIS
433
53. O. Warburg, W. Christian, and A. Griese, Biochem. Z. 282, 157-205 (1935).
54. D. B. M. Scott and S. S. Cohen, Biochem. J. 55, 23-33 (1953).
55. O. Warburg and W. Christian, Biochem. Z. 292, 287-295 (1937).
56. F. Dickens, Biochem. J. 32, 1645-1653 (1938).
57. D. B. M. Scott and S. S. Cohen, /. Biol. Chem. 188, 509-530 (1951).
58. B. Horecker, P. Z. Smyrniotis, and J. E. Seegmiller, /. Biol. Chem. 193, 383396 (1951).
59. P. Srere, J. Cooper, V. Klybas, and E. Racker, Arch. Biochem. Biophys. 59,
535 (1955).
60. J. Hurwitz and B. L. Horecker, /. Biol. Chem. 223, 993-1008 (1956).
61. B. L. Horecker, P. Z. Smyrniotis, and J. Hurwitz, /. Biol. Chem. 223, 10091018 (1956).
62. B. L. Horecker and P. Z. Smyrniotis, /. Am. Chem. Soc. 74, 2123 (1952).
63. B. L. Horecker and P. Z. Smyrniotis, /. Am. Chem. Soc. 75, 1009-1010
(1953).
64. B. L. Horecker, P. Z. Smyrniotis, and H. Klenow, /. Biol. Chem. 205, 661682 (1953).
65. G. de la Haba, I. G. Leder, and E. Racker, /. Biol. Chem. 214, 409-426
(1955).
66. B. L. Horecker and P. Z. Smyrniotis, /. Biol. Chem. 212, 811-825 (1955).
67. B. L. Horecker, P. Z. Smyrniotis, H. Hiatt, and P. Marks, /. Biol. Chem. 212,
827-836 (1955).
68. M. Gibbs and B. L. Horecker, /. Biol. Chem. 208, 813-820 (1954).
69. B. L. Horecker, M. Gibbs, H. Klenow, and P. Z. Smyrniotis, J. Biol. Chem.
207, 393-403 (1954).
70. K. R. Butlin, Biochem. J. 30, 1870-1871 (1936).
71. L. B. Lockwood, B. Tabenkin, and G. E. Ward, J. Bacteriol. 42, 51-61
(1941).
72. F. N. Stokes and J. J. R. Campbell, Arch. Biochem. 30, 121-125 (1951).
73. C. A. Claridge and C. H. Werkman, Arch. Biochem. Biophys. 47, 99-106
(1953).
74. H. Katznelson, /. Bacteriol. 70, 469-475 (1955).
75. J. H. Dowling and H. B. Levine, /. Bacteriol. 72, 555-560 (1956).
76. H. K. Schachman, A. B. Pardee and R. Y. Stanier, Arch. Biochem.
Biophys.
38, 245-260 (1952).
77. W. A. Wood and R. F. Schwerdt, /. Biol. Chem. 201, 501-511 (1953).
78. S. S. Cohen, /. Biol Chem. 189, 617-628 (1951).
79. S. A. Narrod and W. A. Wood, /. Biol. Chem. 220, 45-55 (1956).
80. W. A. Wood and R. F. Schwerdt, /. Biol. Chem. 206, 625-635 (1954).
81. J. MacGee and M. Doudoroff, /. Biol Chem. 210, 617-626 (1954).
82. R. Kovachevich and W. A. Wood, /. Biol. Chem. 213, 745-756 (1955).
83. N. Entner and M. Doudoroff, /. Biol. Chem. 196, 853-862 (1952).
84. L. S. Fosdick and G. W. Rapp, Arch. Biochem. 1, 379-389 (1943).
85. J. T. Sokatch, A. P. Prieto and I. C. Gunsalus, Bacteriol Proc. p. 112
(1956).
86. P. J. Vandemark and W. A. Wood, /. Bacteriol. 71, 385-392 (1956).
87. A. Dalby and A. C. Blackwood, Can. J. Microbiol. 1, 733-742, (1955).
88. J. DeLey, Biochim. et Biophys. Ada 13, 302 (1954).
89. T. Ramakrishnan and J. S. R. Campbell, Biochim. et Biophys. Ada 17, 124127 (1955).
433
53. O. Warburg, W. Christian, and A. Griese, Biochem. Z. 282, 157-205 (1935).
54. D. B. M. Scott and S. S. Cohen, Biochem. J. 55, 23-33 (1953).
55. O. Warburg and W. Christian, Biochem. Z. 292, 287-295 (1937).
56. F. Dickens, Biochem. J. 32, 1645-1653 (1938).
57. D. B. M. Scott and S. S. Cohen, /. Biol. Chem. 188, 509-530 (1951).
58. B. Horecker, P. Z. Smyrniotis, and J. E. Seegmiller, /. Biol. Chem. 193, 383396 (1951).
59. P. Srere, J. Cooper, V. Klybas, and E. Racker, Arch. Biochem. Biophys. 59,
535 (1955).
60. J. Hurwitz and B. L. Horecker, /. Biol. Chem. 223, 993-1008 (1956).
61. B. L. Horecker, P. Z. Smyrniotis, and J. Hurwitz, /. Biol. Chem. 223, 10091018 (1956).
62. B. L. Horecker and P. Z. Smyrniotis, /. Am. Chem. Soc. 74, 2123 (1952).
63. B. L. Horecker and P. Z. Smyrniotis, /. Am. Chem. Soc. 75, 1009-1010
(1953).
64. B. L. Horecker, P. Z. Smyrniotis, and H. Klenow, /. Biol. Chem. 205, 661682 (1953).
65. G. de la Haba, I. G. Leder, and E. Racker, /. Biol. Chem. 214, 409-426
(1955).
66. B. L. Horecker and P. Z. Smyrniotis, /. Biol. Chem. 212, 811-825 (1955).
67. B. L. Horecker, P. Z. Smyrniotis, H. Hiatt, and P. Marks, /. Biol. Chem. 212,
827-836 (1955).
68. M. Gibbs and B. L. Horecker, /. Biol. Chem. 208, 813-820 (1954).
69. B. L. Horecker, M. Gibbs, H. Klenow, and P. Z. Smyrniotis, J. Biol. Chem.
207, 393-403 (1954).
70. K. R. Butlin, Biochem. J. 30, 1870-1871 (1936).
71. L. B. Lockwood, B. Tabenkin, and G. E. Ward, J. Bacteriol. 42, 51-61
(1941).
72. F. N. Stokes and J. J. R. Campbell, Arch. Biochem. 30, 121-125 (1951).
73. C. A. Claridge and C. H. Werkman, Arch. Biochem. Biophys. 47, 99-106
(1953).
74. H. Katznelson, /. Bacteriol. 70, 469-475 (1955).
75. J. H. Dowling and H. B. Levine, /. Bacteriol. 72, 555-560 (1956).
76. H. K. Schachman, A. B. Pardee and R. Y. Stanier, Arch. Biochem.
Biophys.
38, 245-260 (1952).
77. W. A. Wood and R. F. Schwerdt, /. Biol. Chem. 201, 501-511 (1953).
78. S. S. Cohen, /. Biol Chem. 189, 617-628 (1951).
79. S. A. Narrod and W. A. Wood, /. Biol. Chem. 220, 45-55 (1956).
80. W. A. Wood and R. F. Schwerdt, /. Biol. Chem. 206, 625-635 (1954).
81. J. MacGee and M. Doudoroff, /. Biol Chem. 210, 617-626 (1954).
82. R. Kovachevich and W. A. Wood, /. Biol. Chem. 213, 745-756 (1955).
83. N. Entner and M. Doudoroff, /. Biol. Chem. 196, 853-862 (1952).
84. L. S. Fosdick and G. W. Rapp, Arch. Biochem. 1, 379-389 (1943).
85. J. T. Sokatch, A. P. Prieto and I. C. Gunsalus, Bacteriol Proc. p. 112
(1956).
86. P. J. Vandemark and W. A. Wood, /. Bacteriol. 71, 385-392 (1956).
87. A. Dalby and A. C. Blackwood, Can. J. Microbiol. 1, 733-742, (1955).
88. J. DeLey, Biochim. et Biophys. Ada 13, 302 (1954).
89. T. Ramakrishnan and J. S. R. Campbell, Biochim. et Biophys. Ada 17, 124127 (1955).
