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C P Stanners

Showing results (41-50 of 76) with videos related to

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Journal of Cellular Physiology|May 1, 1978
Effect of extreme amino acid starvation on the protein synthetic machinery of CHO cellsC P Stanners, T M Wightman, J L Harkins
Gene|June 30, 1991
Sequence requirements for the stimulation of gene amplification by a mammalian genomic elementL K Beitel, J G McArthur, C P Stanners
The Journal of Cell Biology|August 10, 2000
The specificity for the differentiation blocking activity of carcinoembryonic antigen resides in its glycophosphatidyl-inositol anchorR A Screaton, L DeMarte, P Dráber, et al.
Cell Growth & Differentiation : the Molecular Biology Journal of the American Association for Cancer Research|May 1, 1996
Radical differences in functions of closely related members of the human carcinoembryonic antigen gene familyM Rojas, L DeMarte, R A Screaton, et al.
European Journal of Biochemistry|July 8, 1998
Transcriptional regulation of the non-specific cross-reacting antigen gene, a member of the carcinoembryonic antigen gene family up-regulated in colorectal carcinomasM D Koops, J Thompson, W Zimmermann, et al.
Cancer Research|July 26, 2000
Human carcinoembryonic antigen functions as a general inhibitor of anoikisC Ordoñez, R A Screaton, C Ilantzis, et al.
Progress in Clinical and Biological Research|January 1, 1983
Studies of cloned genes for a surface antigen correlated with human chronic lymphocytic leukemiaC P Stanners, J W Chamberlain, T Lam, et al.
The International Journal of Biological Markers|July 1, 1992
The CEA family: a system in transitional evolution?C P Stanners, M Rojas, H Zhou, et al.
Tumour Biology : the Journal of the International Society for Oncodevelopmental Biology and Medicine|January 1, 1995
Opposite functions for two classes of genes of the human carcinoembryonic antigen familyC P Stanners, L DeMarte, M Rojas, et al.
The Journal of Biological Chemistry|November 10, 1981
Model for messenger RNA translation during amino acid starvation applied to the calculation of protein synthetic error ratesC B Harley, J W Pollard, C P Stanners, et al.
Pageof 8

Showing results (41-50 of 76) with videos related to

Sort By:
Pageof 8
Journal of Cellular Physiology|May 1, 1978
Effect of extreme amino acid starvation on the protein synthetic machinery of CHO cellsC P Stanners, T M Wightman, J L Harkins
Gene|June 30, 1991
Sequence requirements for the stimulation of gene amplification by a mammalian genomic elementL K Beitel, J G McArthur, C P Stanners
The Journal of Cell Biology|August 10, 2000
The specificity for the differentiation blocking activity of carcinoembryonic antigen resides in its glycophosphatidyl-inositol anchorR A Screaton, L DeMarte, P Dráber, et al.
Cell Growth & Differentiation : the Molecular Biology Journal of the American Association for Cancer Research|May 1, 1996
Radical differences in functions of closely related members of the human carcinoembryonic antigen gene familyM Rojas, L DeMarte, R A Screaton, et al.
European Journal of Biochemistry|July 8, 1998
Transcriptional regulation of the non-specific cross-reacting antigen gene, a member of the carcinoembryonic antigen gene family up-regulated in colorectal carcinomasM D Koops, J Thompson, W Zimmermann, et al.
Cancer Research|July 26, 2000
Human carcinoembryonic antigen functions as a general inhibitor of anoikisC Ordoñez, R A Screaton, C Ilantzis, et al.
Progress in Clinical and Biological Research|January 1, 1983
Studies of cloned genes for a surface antigen correlated with human chronic lymphocytic leukemiaC P Stanners, J W Chamberlain, T Lam, et al.
The International Journal of Biological Markers|July 1, 1992
The CEA family: a system in transitional evolution?C P Stanners, M Rojas, H Zhou, et al.
Tumour Biology : the Journal of the International Society for Oncodevelopmental Biology and Medicine|January 1, 1995
Opposite functions for two classes of genes of the human carcinoembryonic antigen familyC P Stanners, L DeMarte, M Rojas, et al.
The Journal of Biological Chemistry|November 10, 1981
Model for messenger RNA translation during amino acid starvation applied to the calculation of protein synthetic error ratesC B Harley, J W Pollard, C P Stanners, et al.
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