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Terasima, T . and T o l m a c h , L . J . (1961). Changes in X - r a y sensitivity o f H e L a cells
during the division cycle. Nature, Lond. 190, 1,210.
T h o m s o n , R . Y . and Paul, J. (1957). T h e metabolic stability o f nucleic acids in cells
grown in tissue culture. Biochem. J. 67, 16 p .
T h o m s o n , R . Y . , Paul, J. and Davidson, J. N . (1956). Metabolic stability o f deoxyribonucleic acid in fibroblast cultures. Biochim. biophys. Acta 22, 581.
T h o m s o n , R . Y . , Paul, J. and Davidson, J. N . (1958). Metabolic study o f the nucleic
acids in cultures o f a pure strain o f mammalian cells. Biochem. J. 69, 553.
T i m o n e n , S. and Therman, E. (1950). T h e changes in the mitotic mechanism o f
human cancer cells. Cancer Res. 10, 431.
Vendrely, R . , K n o b l o c h - M a z e n , A . and Vendrely, C . (1960). A comparative biochemical study o f nucleohistones and nucleoprotamines in the cell nucleus.
In " T h e Cell Nucleus" (J. S. Mitchell, e d . ) , p . 200. Butterworth, L o n d o n .
Vincent, W . S. (1954).
8 2
P incorporation into starfish oocyte nucleoli. Biol. Bull.,
Woods Hole 107, 326.
Vincent, W . S. and Baltus, E. (1960). T h e ribonucleic acid o f nucleoli. In " T h e Cell
Nucleus" (J. S. Mitchell, e d . ) , p . 18. Butterworth, L o n d o n .
Volkin, E., Astrachan, L. and Countryman, J. L. (1958). Metabolism o f ribonucleic
acid phosphorus in E. coli infected with bacteriophage T 7 . Virology 6, 545.
Walker, P. M . B. and Richards, B. M . (1959). Quantitative microscopic techniques
for single cells. In " T h e C e l l " (J. Brachet and A . Mirsky, eds.), V o l . I, p . 91.
A c a d e m i c Press, N e w York.
Walker, P. M . B. and Yates, H . B. (1952). Nuclear components o f dividing cells.
Proc. roy. Soc. B 140, 274.
Watson, J. D . and Crick, F. H . C . (1953). A structure for deoxyribonucleic acids.
Nature, Lond. 171, 737, 964.
Watts, J. W . and Harris, H . (1959). Turnover o f nucleic acids in a non-multiplying
animal cell. Biochem. J. 72, 147.
Weiss, S. B. (1960). Enzymatic incorporation o f ribonucleoside triphosphates into
the interpolynucleotide linkages o f ribonucleic acid. Proc. nat. Acad. Sci., Wash.
46, 1,020.
Weiss, S. B. and Nakamoto, T . (1961). Net synthesis o f ribonucleic acid with a
microbial enzyme requiring deoxyribonucleic acid and 4 ribonucleoside
triphosphates. J. biol. Chem. 236, p c 18.
Wilkins, M . H . F., Stokes, A . R . and Wilson, H . R . (1953). Molecular structure o f
deoxypentose nucleic acids. Nature, Lond. 171, 738.
Wilkins, M . H . F. and Z u b a y , G . (1959). T h e absence o f histone in the bacterium
E. coli. II. X - r a y diffraction o f nucleoprotein extract. J. biochem. biophys. Cytol.
5, 55.
W o o d s , P. S. (1960). Autoradiographic studies o f ribonucleic acid metabolism with
tritium-labelled cytidine. In " T h e Cell Nucleus" (J. S. Mitchell, e d . ) , p . 127.
Butterworth, L o n d o n .
Y a m a d a , J. W . and Puck, T . T . (1961), A c t i o n o f radiation on mammalian cells.
I V . Reversible mitotic lag in the S3 H e L a cell produced b y l o w doses o f X-rays.
Proc. nat. Acad. Sci., Wash. 47, 1,181.
Yeas, M . (1962). T h e coding hypothesis. Int. Rev. Cytol. 13, 1.
Z u b a y , G . and Wilkins, M . H . F. (1960). X - r a y diffraction studies o f the structure
o f ribosomes from E. coli. J. mol. Biol. 2, 105.
J. S E E D
Terasima, T . and T o l m a c h , L . J . (1961). Changes in X - r a y sensitivity o f H e L a cells
during the division cycle. Nature, Lond. 190, 1,210.
T h o m s o n , R . Y . and Paul, J. (1957). T h e metabolic stability o f nucleic acids in cells
grown in tissue culture. Biochem. J. 67, 16 p .
T h o m s o n , R . Y . , Paul, J. and Davidson, J. N . (1956). Metabolic stability o f deoxyribonucleic acid in fibroblast cultures. Biochim. biophys. Acta 22, 581.
T h o m s o n , R . Y . , Paul, J. and Davidson, J. N . (1958). Metabolic study o f the nucleic
acids in cultures o f a pure strain o f mammalian cells. Biochem. J. 69, 553.
T i m o n e n , S. and Therman, E. (1950). T h e changes in the mitotic mechanism o f
human cancer cells. Cancer Res. 10, 431.
Vendrely, R . , K n o b l o c h - M a z e n , A . and Vendrely, C . (1960). A comparative biochemical study o f nucleohistones and nucleoprotamines in the cell nucleus.
In " T h e Cell Nucleus" (J. S. Mitchell, e d . ) , p . 200. Butterworth, L o n d o n .
Vincent, W . S. (1954).
8 2
P incorporation into starfish oocyte nucleoli. Biol. Bull.,
Woods Hole 107, 326.
Vincent, W . S. and Baltus, E. (1960). T h e ribonucleic acid o f nucleoli. In " T h e Cell
Nucleus" (J. S. Mitchell, e d . ) , p . 18. Butterworth, L o n d o n .
Volkin, E., Astrachan, L. and Countryman, J. L. (1958). Metabolism o f ribonucleic
acid phosphorus in E. coli infected with bacteriophage T 7 . Virology 6, 545.
Walker, P. M . B. and Richards, B. M . (1959). Quantitative microscopic techniques
for single cells. In " T h e C e l l " (J. Brachet and A . Mirsky, eds.), V o l . I, p . 91.
A c a d e m i c Press, N e w York.
Walker, P. M . B. and Yates, H . B. (1952). Nuclear components o f dividing cells.
Proc. roy. Soc. B 140, 274.
Watson, J. D . and Crick, F. H . C . (1953). A structure for deoxyribonucleic acids.
Nature, Lond. 171, 737, 964.
Watts, J. W . and Harris, H . (1959). Turnover o f nucleic acids in a non-multiplying
animal cell. Biochem. J. 72, 147.
Weiss, S. B. (1960). Enzymatic incorporation o f ribonucleoside triphosphates into
the interpolynucleotide linkages o f ribonucleic acid. Proc. nat. Acad. Sci., Wash.
46, 1,020.
Weiss, S. B. and Nakamoto, T . (1961). Net synthesis o f ribonucleic acid with a
microbial enzyme requiring deoxyribonucleic acid and 4 ribonucleoside
triphosphates. J. biol. Chem. 236, p c 18.
Wilkins, M . H . F., Stokes, A . R . and Wilson, H . R . (1953). Molecular structure o f
deoxypentose nucleic acids. Nature, Lond. 171, 738.
Wilkins, M . H . F. and Z u b a y , G . (1959). T h e absence o f histone in the bacterium
E. coli. II. X - r a y diffraction o f nucleoprotein extract. J. biochem. biophys. Cytol.
5, 55.
W o o d s , P. S. (1960). Autoradiographic studies o f ribonucleic acid metabolism with
tritium-labelled cytidine. In " T h e Cell Nucleus" (J. S. Mitchell, e d . ) , p . 127.
Butterworth, L o n d o n .
Y a m a d a , J. W . and Puck, T . T . (1961), A c t i o n o f radiation on mammalian cells.
I V . Reversible mitotic lag in the S3 H e L a cell produced b y l o w doses o f X-rays.
Proc. nat. Acad. Sci., Wash. 47, 1,181.
Yeas, M . (1962). T h e coding hypothesis. Int. Rev. Cytol. 13, 1.
Z u b a y , G . and Wilkins, M . H . F. (1960). X - r a y diffraction studies o f the structure
o f ribosomes from E. coli. J. mol. Biol. 2, 105.
