3 4 8
J . S E E D
Graham, A . F. and Siminovitch, L . (1957). Conservation o f R N A and D N A phosphorus in strain L (Earle) mouse cells. Biochim. biophys. Acta 26, 427.
Gros, F., Hiat, H . , Gilbert, W . , Kurland, C . G., Risebrough, R . W . and Watson, J.
D . (1961). Unstable ribonucleic acid revealed by pulse labelling o f E. coli.
Nature, Lond. 190, 581.
Halvorson, H , (1958). I. Intracellular protein and nucleic acid turnover in resting
yeast cells. II. Studies on protein and nucleic acid. Biochim. biophys. Acta 27, 255.
Hamilton, L. D . , Barclay, R . K . , Wilkins, M . H . F., Brown, G . L., Wilson, H . R . ,
Marvin, D . A . , Ephrussi-Taylor, H . and Simmons, N . S. (1959). Similarity o f
the structure o f deoxyribonucleic acid from a variety o f sources. J. biophys.
biochem. Cytol. 5, 397.
Harris, H . (1959a). T h e initiation o f deoxyribonucleic acid synthesis in the connective tissue cell, with some observations on the function o f the nucleolus.
Biochem. J. 72, 54.
Harris, H . (1959b). Turnover o f nuclear and cytoplasmic ribonucleic acid in two
types o f animal cells, with some further observations on the nucleolus. Biochem. J.
73, 362.
Harris, H . (1960). T h e relationship between the synthesis o f protein and the synthesis
of ribonucleic acid in the connective tissue cell. Biochem. J. 74, 276.
Harris, H . and Watts, J. W . (1962). T h e relationship between nuclear and cytoplasmic ribonucleic acid. Proc. roy. Soc. B 1 5 6 , 109.
Hauschka, T . S. (1952). Relationship between chromosome ploidy and histocompatability in mouse ascites tumours. Cancer Res. 12, 269.
Hoagland, M . B. (1960). T h e relationship o f nucleic acid and protein synthesis as
revealed b y studies in cell-free systems. In " T h e Nucleic A c i d s " (E. Chargaff and
J. N . Davidson, eds.), V o l . I l l , p . 349. A c a d e m i c Press, N e w York.
Holmes, B. E. and M e e , L. K . (1954). T h e inhibition o f deoxyribonucleic acid
synthesis by irradiation with special reference to irradiation in the early stages
of liver regeneration. " R a d i o b i o l . Sym. ( L i e g e ) " p . 220. Butterworth, L o n d o n .
Howard, A . and Pelc, S. R . (1953). Synthesis o f deoxyribonucleic acid in normal and
irradiated cells and its relation to chromosome breakage. Heredity Suppl. 6, 261.
Huang, R . C . and Bonner, J. (1962). His tone, a suppressor o f chromosomal ribonucleic acid synthesis. Proc. nat. Acad. Sci., Wash. 48, 1,216.
Huang, R . C , Maheshwari, N . and Bonner, J. (1960). Enzymatic synthesis o f ribonucleic acid. Biochem. Biophys. Res. Comm. 3, 689.
Hughes, W . L., Bond, V . P., Brecher, G., Cronkite, E. P., Painter, R . B., Quastler,
H . and Sherman, F. G . (1958). Cellular proliferation in the mouse as revealed
b y autoradiography with tritiated thymidine. Proc. nat. Acad. Sci., Wash. 44, 476.
Hurwitz, J., Bresler, A . and Diringer, R . (1960). T h e enzymic incorporation of ribonucleotides into polyribonucleotides and the effect o f deoxyribonucleic acid.
Biochem. Biophys. Res. Comm. 3, 15.
J a c o b , F. and M o n o d , J. (1961). Genetic regulatory mechanisms in the synthesis o f
protein. J. mol. Biol. 3, 318.
Jeener, R . and Szafarz, D . (1950). Relations between the rate o f renewal and the
intracellular localization o f ribonucleic acid. Arch. Biochem. 26, 54.
Josse, J., Kaiser, A . D . and Kornberg, A . (1961). Enzymatic synthesis o f deoxyribonucleic acid. V I I I . J. biol. Chem. 236, 864.
Kawamata, J. and Imanishi, M . (1961). Mechanism o f action o f actinomycin with
special reference to its interaction with deoxyribonucleic acid. Bikerts. J. 4, 13.
Keir, H . M . , Binnie, B. and Smellie, R . M . S. (1962). Factors affecting the primer
for deoxyribonucleic acid polymerase. Biochem. J. 82, 493.
J . S E E D
Graham, A . F. and Siminovitch, L . (1957). Conservation o f R N A and D N A phosphorus in strain L (Earle) mouse cells. Biochim. biophys. Acta 26, 427.
Gros, F., Hiat, H . , Gilbert, W . , Kurland, C . G., Risebrough, R . W . and Watson, J.
D . (1961). Unstable ribonucleic acid revealed by pulse labelling o f E. coli.
Nature, Lond. 190, 581.
Halvorson, H , (1958). I. Intracellular protein and nucleic acid turnover in resting
yeast cells. II. Studies on protein and nucleic acid. Biochim. biophys. Acta 27, 255.
Hamilton, L. D . , Barclay, R . K . , Wilkins, M . H . F., Brown, G . L., Wilson, H . R . ,
Marvin, D . A . , Ephrussi-Taylor, H . and Simmons, N . S. (1959). Similarity o f
the structure o f deoxyribonucleic acid from a variety o f sources. J. biophys.
biochem. Cytol. 5, 397.
Harris, H . (1959a). T h e initiation o f deoxyribonucleic acid synthesis in the connective tissue cell, with some observations on the function o f the nucleolus.
Biochem. J. 72, 54.
Harris, H . (1959b). Turnover o f nuclear and cytoplasmic ribonucleic acid in two
types o f animal cells, with some further observations on the nucleolus. Biochem. J.
73, 362.
Harris, H . (1960). T h e relationship between the synthesis o f protein and the synthesis
of ribonucleic acid in the connective tissue cell. Biochem. J. 74, 276.
Harris, H . and Watts, J. W . (1962). T h e relationship between nuclear and cytoplasmic ribonucleic acid. Proc. roy. Soc. B 1 5 6 , 109.
Hauschka, T . S. (1952). Relationship between chromosome ploidy and histocompatability in mouse ascites tumours. Cancer Res. 12, 269.
Hoagland, M . B. (1960). T h e relationship o f nucleic acid and protein synthesis as
revealed b y studies in cell-free systems. In " T h e Nucleic A c i d s " (E. Chargaff and
J. N . Davidson, eds.), V o l . I l l , p . 349. A c a d e m i c Press, N e w York.
Holmes, B. E. and M e e , L. K . (1954). T h e inhibition o f deoxyribonucleic acid
synthesis by irradiation with special reference to irradiation in the early stages
of liver regeneration. " R a d i o b i o l . Sym. ( L i e g e ) " p . 220. Butterworth, L o n d o n .
Howard, A . and Pelc, S. R . (1953). Synthesis o f deoxyribonucleic acid in normal and
irradiated cells and its relation to chromosome breakage. Heredity Suppl. 6, 261.
Huang, R . C . and Bonner, J. (1962). His tone, a suppressor o f chromosomal ribonucleic acid synthesis. Proc. nat. Acad. Sci., Wash. 48, 1,216.
Huang, R . C , Maheshwari, N . and Bonner, J. (1960). Enzymatic synthesis o f ribonucleic acid. Biochem. Biophys. Res. Comm. 3, 689.
Hughes, W . L., Bond, V . P., Brecher, G., Cronkite, E. P., Painter, R . B., Quastler,
H . and Sherman, F. G . (1958). Cellular proliferation in the mouse as revealed
b y autoradiography with tritiated thymidine. Proc. nat. Acad. Sci., Wash. 44, 476.
Hurwitz, J., Bresler, A . and Diringer, R . (1960). T h e enzymic incorporation of ribonucleotides into polyribonucleotides and the effect o f deoxyribonucleic acid.
Biochem. Biophys. Res. Comm. 3, 15.
J a c o b , F. and M o n o d , J. (1961). Genetic regulatory mechanisms in the synthesis o f
protein. J. mol. Biol. 3, 318.
Jeener, R . and Szafarz, D . (1950). Relations between the rate o f renewal and the
intracellular localization o f ribonucleic acid. Arch. Biochem. 26, 54.
Josse, J., Kaiser, A . D . and Kornberg, A . (1961). Enzymatic synthesis o f deoxyribonucleic acid. V I I I . J. biol. Chem. 236, 864.
Kawamata, J. and Imanishi, M . (1961). Mechanism o f action o f actinomycin with
special reference to its interaction with deoxyribonucleic acid. Bikerts. J. 4, 13.
Keir, H . M . , Binnie, B. and Smellie, R . M . S. (1962). Factors affecting the primer
for deoxyribonucleic acid polymerase. Biochem. J. 82, 493.
