10. D N A A N D R N A S Y N T H E S I S
351
R i c h , A . and Watson, J. D . (1954). Physical studies o n ribonucleic acid. Nature, Lond.
173, 995.
Richards, B. M . (1955). Deoxyribose nucleic acid values in tumour cells with reference
to the stem cell theory o f tumour growth. Nature, Lond. 175, 259.
Richards, B. M . and Davies, H . G . (1958). M i c r o s c o p e interferometry In "General
Gytochemical M e t h o d s " (J. F. Danielli, e d . ) , V o l . I, p . 130. A c a d e m i c Press,
N e w Y o r k .
Richards, B. M . , Walker, P. M . B. and Deeley, E. M . (1956). Changes i n n u c l e a r d e -
oxyribonucleic acid in normal and ascites tumour cells. Ann. N. T. Acad. Sci. 6 3 , 8 3 1 .
Rueckert, R . R . and Mueller, G . C . (1960). Studies on unbalanced growth in tissue culture. I. Induction and consequences o f thymidine deficiency. Cancer Res. 20,1,584.
Schaechter, M . , Bentzon, M . W . and M a a l o e , O . (1959). Synthesis o f deoxyribonucleic acid during the division cycle o f bacteria. Nature, Lond. 183, 1,207.
Seed, J. (1960). Inhibition o f nucleic acid synthesis caused b y X-irradiation o f t h e
nucleolus. Proc. roy. Soc. B 152, 387.
Seed, J. (1961). Action o f radiation on synthesis o f deoxyribonucleic acid in normal
and tumour strain cells. Nature, Lond. 192, 944.
Seed, J. (1962). T h e synthesis o f deoxyribonucleic acid and nuclear protein in normal
and tumour strain cells. Proc. roy. Soc. B 156, 4 1 .
Seed, J. (1963a). Synthesis o f ribonucleic acid, deoxyribonucleic acid and nuclear
protein in normal and tumour strain cells. Nature, Lond. 198, 147.
Seed, J. (1963b). Growth control mechanisms in normal and tumour strain cells.
Nature, Lond. 198, 153.
Seed, J. (1963c). T h e relations between D N A , R N A and protein in normal e m b r y o n i c
cell nuclei and spontaneous tumour cell nuclei. J. Cell Biol. 20, 17.
Shatkin, A . J . (1962). Actinomycin inhibition o f ribonucleic acid synthesis and poliovirus infection o f H e L a cells. Biochim. biophys. Acta 61, 310.
Sirlin, J. L . (1962). R e v i e w o n " T h e Nucleolus". Progr. Biophys. 12, 25.
Smellie, R . M . S., Keir, H . M . and Davidson, J. N . (1959). Studies on the biosynthesis
o f deoxyribonucleic acid b y extracts o f mammalian cells. I. Incorporation o f
3 H thymidine. Biochim. biophys. Acta 35, 389.
Smellie, R . M . S., M c l n d o e , W . M . and Davidson, J. N . (1953). T h e incorporation o f
1 6
N ,
3 5
S , and
1 4
C into nucleic acids and proteins o f rat liver. Biochim. biophys.
Acta 11, 559.
Smith, C . L., Newton, A . A . and W i l d y , P. (1959). Deoxyribonucleic acid formation
in multiplying H e L a cells. Nature, Lond. 184, 107.
Speyer, J. F., Lengyel, P. Basilio, C . and O c h o a , S. (1962). Synthetic polynucleotides
and the amino acid code. II. Proc. nat. Acad. Sci., Wash. 48, 63.
Stanners, C . P. and Till, J. E. (1960). Deoxyribonucleic acid synthesis in individual
L-strain mouse cells. Biochim. biophys. Acta 37, 406.
Stevens, A . (1960). Incorporation o f t h e adenine ribonucleotide into ribonucleic acid
b y cell fractions from E. coli. Biochem. Biophys. Res. Comm. 3, 92.
Stevens, A . (1961). Net formation o f polyribonucleotides with base compositions
analogous to deoxyribonucleic acid. J. biol. Chem. 236, p c 43.
Swift, H . (1950a). T h e desoxyribonucleic acid content o f animal cell nuclei. Physiol.
Zodl. 23, 169.
Swift, H . (1950b). T h e constancy o f desoxyribonucleic acid in plant nuclei. Proc.
nat. Acad. Sci., Wash. 36, 643.
Taylor, J. H . , W o o d s , P. S. and Hughes, W . L. (1957). T h e organisation and duplication o f chromosomes as revealed by autoradiographic studies using tritiumlabelled thymidine. Proc. nat. Acad. Sci., Wash. 43, 122.
351
R i c h , A . and Watson, J. D . (1954). Physical studies o n ribonucleic acid. Nature, Lond.
173, 995.
Richards, B. M . (1955). Deoxyribose nucleic acid values in tumour cells with reference
to the stem cell theory o f tumour growth. Nature, Lond. 175, 259.
Richards, B. M . and Davies, H . G . (1958). M i c r o s c o p e interferometry In "General
Gytochemical M e t h o d s " (J. F. Danielli, e d . ) , V o l . I, p . 130. A c a d e m i c Press,
N e w Y o r k .
Richards, B. M . , Walker, P. M . B. and Deeley, E. M . (1956). Changes i n n u c l e a r d e -
oxyribonucleic acid in normal and ascites tumour cells. Ann. N. T. Acad. Sci. 6 3 , 8 3 1 .
Rueckert, R . R . and Mueller, G . C . (1960). Studies on unbalanced growth in tissue culture. I. Induction and consequences o f thymidine deficiency. Cancer Res. 20,1,584.
Schaechter, M . , Bentzon, M . W . and M a a l o e , O . (1959). Synthesis o f deoxyribonucleic acid during the division cycle o f bacteria. Nature, Lond. 183, 1,207.
Seed, J. (1960). Inhibition o f nucleic acid synthesis caused b y X-irradiation o f t h e
nucleolus. Proc. roy. Soc. B 152, 387.
Seed, J. (1961). Action o f radiation on synthesis o f deoxyribonucleic acid in normal
and tumour strain cells. Nature, Lond. 192, 944.
Seed, J. (1962). T h e synthesis o f deoxyribonucleic acid and nuclear protein in normal
and tumour strain cells. Proc. roy. Soc. B 156, 4 1 .
Seed, J. (1963a). Synthesis o f ribonucleic acid, deoxyribonucleic acid and nuclear
protein in normal and tumour strain cells. Nature, Lond. 198, 147.
Seed, J. (1963b). Growth control mechanisms in normal and tumour strain cells.
Nature, Lond. 198, 153.
Seed, J. (1963c). T h e relations between D N A , R N A and protein in normal e m b r y o n i c
cell nuclei and spontaneous tumour cell nuclei. J. Cell Biol. 20, 17.
Shatkin, A . J . (1962). Actinomycin inhibition o f ribonucleic acid synthesis and poliovirus infection o f H e L a cells. Biochim. biophys. Acta 61, 310.
Sirlin, J. L . (1962). R e v i e w o n " T h e Nucleolus". Progr. Biophys. 12, 25.
Smellie, R . M . S., Keir, H . M . and Davidson, J. N . (1959). Studies on the biosynthesis
o f deoxyribonucleic acid b y extracts o f mammalian cells. I. Incorporation o f
3 H thymidine. Biochim. biophys. Acta 35, 389.
Smellie, R . M . S., M c l n d o e , W . M . and Davidson, J. N . (1953). T h e incorporation o f
1 6
N ,
3 5
S , and
1 4
C into nucleic acids and proteins o f rat liver. Biochim. biophys.
Acta 11, 559.
Smith, C . L., Newton, A . A . and W i l d y , P. (1959). Deoxyribonucleic acid formation
in multiplying H e L a cells. Nature, Lond. 184, 107.
Speyer, J. F., Lengyel, P. Basilio, C . and O c h o a , S. (1962). Synthetic polynucleotides
and the amino acid code. II. Proc. nat. Acad. Sci., Wash. 48, 63.
Stanners, C . P. and Till, J. E. (1960). Deoxyribonucleic acid synthesis in individual
L-strain mouse cells. Biochim. biophys. Acta 37, 406.
Stevens, A . (1960). Incorporation o f t h e adenine ribonucleotide into ribonucleic acid
b y cell fractions from E. coli. Biochem. Biophys. Res. Comm. 3, 92.
Stevens, A . (1961). Net formation o f polyribonucleotides with base compositions
analogous to deoxyribonucleic acid. J. biol. Chem. 236, p c 43.
Swift, H . (1950a). T h e desoxyribonucleic acid content o f animal cell nuclei. Physiol.
Zodl. 23, 169.
Swift, H . (1950b). T h e constancy o f desoxyribonucleic acid in plant nuclei. Proc.
nat. Acad. Sci., Wash. 36, 643.
Taylor, J. H . , W o o d s , P. S. and Hughes, W . L. (1957). T h e organisation and duplication o f chromosomes as revealed by autoradiographic studies using tritiumlabelled thymidine. Proc. nat. Acad. Sci., Wash. 43, 122.
