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M H Cobb

Showing results (91-100 of 126) with videos related to

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Immunity|May 5, 2000
HPK1 is activated by lymphocyte antigen receptors and negatively regulates AP-1J Liou, F Kiefer, A Dang, et al.
Cellular & Molecular Biology Research|January 1, 1994
Regulation of the MAP kinase cascadeM H Cobb, S Xu, J E Hepler, et al.
Advances in Pharmacology (San Diego, Calif.)|January 1, 1996
Structural analysis of the MAP kinase ERK2 and studies of MAP kinase regulatory pathwaysM H Cobb, S Xu, M Cheng, et al.
Proceedings of the National Academy of Sciences of the United States of America|August 1, 1992
Evidence for a Ras-dependent extracellular signal-regulated protein kinase (ERK) cascadeD J Robbins, M Cheng, E Zhen, et al.
Cell|May 30, 1998
Phosphorylation of the MAP kinase ERK2 promotes its homodimerization and nuclear translocationA V Khokhlatchev, B Canagarajah, J Wilsbacher, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|January 24, 1998
The mitogen-activated protein kinase p38-2 is necessary for the inhibition of N-type calcium current by bradykininM A Wilk-Blaszczak, B Stein, S Xu, et al.
The Journal of Biological Chemistry|May 29, 2000
WNK1, a novel mammalian serine/threonine protein kinase lacking the catalytic lysine in subdomain IIB Xu, J M English, J L Wilsbacher, et al.
The Journal of Biological Chemistry|April 26, 2000
Stimulation of NFkappa B activity by multiple signaling pathways requires PAK1J A Frost, J L Swantek, S Stippec, et al.
The EMBO Journal|March 1, 1995
ERK phosphorylation potentiates Elk-1-mediated ternary complex formation and transactivationH Gille, M Kortenjann, O Thomae, et al.
Proceedings of the National Academy of Sciences of the United States of America|March 18, 1997
The structure of mitogen-activated protein kinase p38 at 2.1-A resolutionZ Wang, P C Harkins, R J Ulevitch, et al.
Pageof 13

Showing results (91-100 of 126) with videos related to

Sort By:
Pageof 13
Immunity|May 5, 2000
HPK1 is activated by lymphocyte antigen receptors and negatively regulates AP-1J Liou, F Kiefer, A Dang, et al.
Cellular & Molecular Biology Research|January 1, 1994
Regulation of the MAP kinase cascadeM H Cobb, S Xu, J E Hepler, et al.
Advances in Pharmacology (San Diego, Calif.)|January 1, 1996
Structural analysis of the MAP kinase ERK2 and studies of MAP kinase regulatory pathwaysM H Cobb, S Xu, M Cheng, et al.
Proceedings of the National Academy of Sciences of the United States of America|August 1, 1992
Evidence for a Ras-dependent extracellular signal-regulated protein kinase (ERK) cascadeD J Robbins, M Cheng, E Zhen, et al.
Cell|May 30, 1998
Phosphorylation of the MAP kinase ERK2 promotes its homodimerization and nuclear translocationA V Khokhlatchev, B Canagarajah, J Wilsbacher, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|January 24, 1998
The mitogen-activated protein kinase p38-2 is necessary for the inhibition of N-type calcium current by bradykininM A Wilk-Blaszczak, B Stein, S Xu, et al.
The Journal of Biological Chemistry|May 29, 2000
WNK1, a novel mammalian serine/threonine protein kinase lacking the catalytic lysine in subdomain IIB Xu, J M English, J L Wilsbacher, et al.
The Journal of Biological Chemistry|April 26, 2000
Stimulation of NFkappa B activity by multiple signaling pathways requires PAK1J A Frost, J L Swantek, S Stippec, et al.
The EMBO Journal|March 1, 1995
ERK phosphorylation potentiates Elk-1-mediated ternary complex formation and transactivationH Gille, M Kortenjann, O Thomae, et al.
Proceedings of the National Academy of Sciences of the United States of America|March 18, 1997
The structure of mitogen-activated protein kinase p38 at 2.1-A resolutionZ Wang, P C Harkins, R J Ulevitch, et al.
Pageof 13