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The Journal of Biological Chemistry
|
March 25, 1994
Phosphorylation of the tumor suppressor protein p53 by mitogen-activated protein kinases
D M Milne, D G Campbell, F B Caudwell, et al.
Nucleic Acids Research
|
July 11, 1993
Activation of the cryptic DNA binding function of mutant forms of p53
T R Hupp, D W Meek, C A Midgley, et al.
Oncogene
|
July 1, 1992
Phosphorylation of the p53 tumour-suppressor protein at three N-terminal sites by a novel casein kinase I-like enzyme
D M Milne, R H Palmer, D G Campbell, et al.
The Journal of Biological Chemistry
|
March 10, 1995
p53 is phosphorylated in vitro and in vivo by an ultraviolet radiation-induced protein kinase characteristic of the c-Jun kinase, JNK1
D M Milne, L E Campbell, D G Campbell, et al.
Journal of Environmental Quality
|
July 31, 2001
Nitrate loss in subsurface drainage as affected by nitrogen fertilizer rate
D B Jaynes, T S Colvin, D L Karlen, et al.
Oncogene
|
July 4, 1996
Murine p53 is phosphorylated within the PAb421 epitope by protein kinase C in vitro, but not in vivo, even after stimulation with the phorbol ester o-tetradecanoylphorbol 13-acetate
D M Milne, L McKendrick, L J Jardine, et al.
Journal of Environmental Quality
|
November 4, 2010
Soil-test N recommendations augmented with PEST-optimized RZWQM simulations
R W Malone, D B Jaynes, L Ma, et al.
Oncogene
|
December 5, 2000
IC261, a specific inhibitor of the protein kinases casein kinase 1-delta and -epsilon, triggers the mitotic checkpoint and induces p53-dependent postmitotic effects
L Behrend, D M Milne, M Stöter, et al.
Journal of Environmental Quality
|
September 10, 2004
Nitrate leaching to subsurface drains as affected by drain spacing and changes in crop production system
E J Kladivko, J R Frankenberger, D B Jaynes, et al.
Journal of Environmental Quality
|
April 13, 2004
Using the late spring nitrate test to reduce nitrate loss within a watershed
D B Jaynes, D L Dinnes, D W Meek, et al.
Page
of 5
Search research articles
Search
Showing results (31-40 of 42) with videos related to
Sort By:
Page
of 5
The Journal of Biological Chemistry
|
March 25, 1994
Phosphorylation of the tumor suppressor protein p53 by mitogen-activated protein kinases
D M Milne, D G Campbell, F B Caudwell, et al.
Nucleic Acids Research
|
July 11, 1993
Activation of the cryptic DNA binding function of mutant forms of p53
T R Hupp, D W Meek, C A Midgley, et al.
Oncogene
|
July 1, 1992
Phosphorylation of the p53 tumour-suppressor protein at three N-terminal sites by a novel casein kinase I-like enzyme
D M Milne, R H Palmer, D G Campbell, et al.
The Journal of Biological Chemistry
|
March 10, 1995
p53 is phosphorylated in vitro and in vivo by an ultraviolet radiation-induced protein kinase characteristic of the c-Jun kinase, JNK1
D M Milne, L E Campbell, D G Campbell, et al.
Journal of Environmental Quality
|
July 31, 2001
Nitrate loss in subsurface drainage as affected by nitrogen fertilizer rate
D B Jaynes, T S Colvin, D L Karlen, et al.
Oncogene
|
July 4, 1996
Murine p53 is phosphorylated within the PAb421 epitope by protein kinase C in vitro, but not in vivo, even after stimulation with the phorbol ester o-tetradecanoylphorbol 13-acetate
D M Milne, L McKendrick, L J Jardine, et al.
Journal of Environmental Quality
|
November 4, 2010
Soil-test N recommendations augmented with PEST-optimized RZWQM simulations
R W Malone, D B Jaynes, L Ma, et al.
Oncogene
|
December 5, 2000
IC261, a specific inhibitor of the protein kinases casein kinase 1-delta and -epsilon, triggers the mitotic checkpoint and induces p53-dependent postmitotic effects
L Behrend, D M Milne, M Stöter, et al.
Journal of Environmental Quality
|
September 10, 2004
Nitrate leaching to subsurface drains as affected by drain spacing and changes in crop production system
E J Kladivko, J R Frankenberger, D B Jaynes, et al.
Journal of Environmental Quality
|
April 13, 2004
Using the late spring nitrate test to reduce nitrate loss within a watershed
D B Jaynes, D L Dinnes, D W Meek, et al.
Page
of 5