2. STEROLS: STRUCTURE AND DISTRIBUTION
159
75. D. M. Lilly and W. Cevallos, Trans. N. Y. Acad. Sei. 18, 531-539 (1956).
76. J. Storm and S. H. Hutner, Ann. N. Y. Acad. Sei. 56, 901-909 (1953).
77. R. Cailleau, Ann. inst. Pasteur 59, 137-172, 293-328 (1937); Compt. rend.
soc. biol. 127, 861-863, 1421-1423 (1938); 131, 964-966 (1939).
78. W. H. Johnson, Ann. Rev. Microbiol. 10, 193-212 (1956).
79. R. L. Conner, Science 126, 698 (1957).
80. V. C. Dewey, R. E. Parks, Jr., and G. W. Kidder, Arch. Bioch. 29, 281-290
(1950).
81. G. R. Seaman, J. Cellular Comp. Physiol. 36, 129-131 (1950).
82. W. Bergmann and T. B. Johnson, Z. physiol. Chem. Hoppe Seylers 222,
220-226 (1933).
83. W. Bergmann, H. P. Schedl, and E. M. Low, /. Org. Chem. 10, 587-593
(1945).
84. F. R. Valentine, Jr. and W. Bergmann, /. Org. Chem. 6, 452-461 (1941).
85. W. Bergmann, E. M. Schedl, and E. M. Low, /. Org. Chem. 10, 580-586
(1945).
86. W. Bergmann and F. H. McTigue, /. Org. Chem. 13, 738-741 (1948).
87. W. Bergmann, F. H. McTigue, E. M. Low, W. M. Stokes, and R. J. Feeney,
/. Org. Chem. 15, 96-105 (1950).
88. W. Bergmann and R. J. Feeney, /. Org. Chem. 14, 1078-1084 (1949).
89. W. Bergmann, Unpublished observations.
90. A. Mazur, J. Am. Chem. Soc. 63, 2442-2444 (1941).
91. W. Bergmann and R. J. Feeney, /. Org. Chem. 16, 981-987 (1951).
92. W. Bergmann, S. M. Creighton, and W. M. Stokes, J. Org. Chem. 21, 721728 (1956).
93. D. Lester and W. Bergmann, /. Org. Chem. 6, 120-122 (1941).
94. M. Deffner, Z. physiol. Chem. Hoppe Seylers 278, 165-168 (1943).
95. Y. Toyama and T. Takagi, Mem. Fac. Eng., Nagoya Univ. 7, 156-160
(1955).
96. W. Bergmann, M. J. McLean, and D. Lester, J. Org. Chem. 8, 271-282
(1943).
97. F. Haurowitz and H. Waelsch, Z. physiol. Chem. Hoppe Seylers 161, 300317 (1926).
98. F. Haurowitz, Z. physiol. Chem. Hoppe Seylers 112, 28-37 (1920).
99. Y. Toyama and T. Tanaka, Mem. Fac. Eng., Nagoya Univ. 8, 40-44 (1956).
100. E. S. Faust and T. W. Tallquist, Arch, exptl. Pathol. Pharmakol.
NaunynSchmiedebergs
57, 367-385 (1907).
101. T. von Brand, Z. vergleich. Physiol. 8, 613-624 (1928).
102. L. F. Salisbury and R. J. Anderson, /. Biol. Chem. 129, 505-517 (1939).
103. S. Cmelick and Z. Bartl, Z. physiol. Chem. Hoppe Seylers 305, 170-176
(1956).
104. D. Fairbairn and R. N. Jones, Can. J. Chem. 34, 182-184 (1956).
105. A. de Waele, Bull. Acad. Belg., Cl. Set. [5] 16, 592-597 (1930).
106. F. Bock and F. Wetter, Z. physiol. Chem. Hoppe Seylers 256, 33-41
(1938).
107. D. R. Idler, quoted by H. L. A. Tarr, Ann. Rev. Bioch. 27, 223-244
(1958).
108. J. A. Lovern, Biochem. J. 29, 847-849 (1935).
109. M. Kotake and Y. Kimoto, Proc. Imp. Acad. (Tokyo) 6, 237-238 (1930).
159
75. D. M. Lilly and W. Cevallos, Trans. N. Y. Acad. Sei. 18, 531-539 (1956).
76. J. Storm and S. H. Hutner, Ann. N. Y. Acad. Sei. 56, 901-909 (1953).
77. R. Cailleau, Ann. inst. Pasteur 59, 137-172, 293-328 (1937); Compt. rend.
soc. biol. 127, 861-863, 1421-1423 (1938); 131, 964-966 (1939).
78. W. H. Johnson, Ann. Rev. Microbiol. 10, 193-212 (1956).
79. R. L. Conner, Science 126, 698 (1957).
80. V. C. Dewey, R. E. Parks, Jr., and G. W. Kidder, Arch. Bioch. 29, 281-290
(1950).
81. G. R. Seaman, J. Cellular Comp. Physiol. 36, 129-131 (1950).
82. W. Bergmann and T. B. Johnson, Z. physiol. Chem. Hoppe Seylers 222,
220-226 (1933).
83. W. Bergmann, H. P. Schedl, and E. M. Low, /. Org. Chem. 10, 587-593
(1945).
84. F. R. Valentine, Jr. and W. Bergmann, /. Org. Chem. 6, 452-461 (1941).
85. W. Bergmann, E. M. Schedl, and E. M. Low, /. Org. Chem. 10, 580-586
(1945).
86. W. Bergmann and F. H. McTigue, /. Org. Chem. 13, 738-741 (1948).
87. W. Bergmann, F. H. McTigue, E. M. Low, W. M. Stokes, and R. J. Feeney,
/. Org. Chem. 15, 96-105 (1950).
88. W. Bergmann and R. J. Feeney, /. Org. Chem. 14, 1078-1084 (1949).
89. W. Bergmann, Unpublished observations.
90. A. Mazur, J. Am. Chem. Soc. 63, 2442-2444 (1941).
91. W. Bergmann and R. J. Feeney, /. Org. Chem. 16, 981-987 (1951).
92. W. Bergmann, S. M. Creighton, and W. M. Stokes, J. Org. Chem. 21, 721728 (1956).
93. D. Lester and W. Bergmann, /. Org. Chem. 6, 120-122 (1941).
94. M. Deffner, Z. physiol. Chem. Hoppe Seylers 278, 165-168 (1943).
95. Y. Toyama and T. Takagi, Mem. Fac. Eng., Nagoya Univ. 7, 156-160
(1955).
96. W. Bergmann, M. J. McLean, and D. Lester, J. Org. Chem. 8, 271-282
(1943).
97. F. Haurowitz and H. Waelsch, Z. physiol. Chem. Hoppe Seylers 161, 300317 (1926).
98. F. Haurowitz, Z. physiol. Chem. Hoppe Seylers 112, 28-37 (1920).
99. Y. Toyama and T. Tanaka, Mem. Fac. Eng., Nagoya Univ. 8, 40-44 (1956).
100. E. S. Faust and T. W. Tallquist, Arch, exptl. Pathol. Pharmakol.
NaunynSchmiedebergs
57, 367-385 (1907).
101. T. von Brand, Z. vergleich. Physiol. 8, 613-624 (1928).
102. L. F. Salisbury and R. J. Anderson, /. Biol. Chem. 129, 505-517 (1939).
103. S. Cmelick and Z. Bartl, Z. physiol. Chem. Hoppe Seylers 305, 170-176
(1956).
104. D. Fairbairn and R. N. Jones, Can. J. Chem. 34, 182-184 (1956).
105. A. de Waele, Bull. Acad. Belg., Cl. Set. [5] 16, 592-597 (1930).
106. F. Bock and F. Wetter, Z. physiol. Chem. Hoppe Seylers 256, 33-41
(1938).
107. D. R. Idler, quoted by H. L. A. Tarr, Ann. Rev. Bioch. 27, 223-244
(1958).
108. J. A. Lovern, Biochem. J. 29, 847-849 (1935).
109. M. Kotake and Y. Kimoto, Proc. Imp. Acad. (Tokyo) 6, 237-238 (1930).
