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The Journal of Biological Chemistry
|
January 12, 2005
Oxidative activation of protein kinase Cgamma through the C1 domain. Effects on gap junctions
Dingbo Lin, Dolores J Takemoto
Biochemical and Biophysical Research Communications
|
September 8, 2007
Protection from ataxia-linked apoptosis by gap junction inhibitors
Dingbo Lin, Dolores J Takemoto
Cellular Signalling
|
January 11, 2007
ZO-1 is required for protein kinase C gamma-driven disassembly of connexin 43
Vladimir Akoyev, Dolores J Takemoto
Communicative & Integrative Biology
|
July 19, 2012
The role of Connexin 46 promoter in lens and other hypoxic tissues
Samuel A Molina, Dolores J Takemoto
Investigative Ophthalmology & Visual Science
|
February 26, 2003
IGF-I-induced phosphorylation of connexin 43 by PKCgamma: regulation of gap junctions in rabbit lens epithelial cells
Dingbo Lin, Daniel L Boyle, Dolores J Takemoto
Molecular Vision
|
November 7, 2002
The interaction and phosphorylation of tropomodulin by protein kinase Calpha in N/N 1003A lens epithelial cells
Lynn M Wagner, Velia M Fowler, Dolores J Takemoto
The Journal of Biological Chemistry
|
October 2, 2004
Inhibition of gap junction activity through the release of the C1B domain of protein kinase Cgamma (PKCgamma) from 14-3-3: identification of PKCgamma-binding sites
Thu Annelise Nguyen, Larry J Takemoto, Dolores J Takemoto
Cellular Signalling
|
July 17, 2007
Protein kinase C as a stress sensor
Micheal E Barnett, Daniel K Madgwick, Dolores J Takemoto
Molecular Vision
|
October 7, 2004
Differential phosphorylation of connexin46 and connexin50 by H2O2 activation of protein kinase Cgamma
Dingbo Lin, Samuel Lobell, Andrea Jewell, et al.
Experimental Eye Research
|
May 12, 2007
Protein kinase C gamma mutations in the C1B domain cause caspase-3-linked apoptosis in lens epithelial cells through gap junctions
Dingbo Lin, Denton Shanks, Om Prakash, et al.
Page
of 3
Search research articles
Search
Showing results (1-10 of 27) with videos related to
Sort By:
Page
of 3
The Journal of Biological Chemistry
|
January 12, 2005
Oxidative activation of protein kinase Cgamma through the C1 domain. Effects on gap junctions
Dingbo Lin, Dolores J Takemoto
Biochemical and Biophysical Research Communications
|
September 8, 2007
Protection from ataxia-linked apoptosis by gap junction inhibitors
Dingbo Lin, Dolores J Takemoto
Cellular Signalling
|
January 11, 2007
ZO-1 is required for protein kinase C gamma-driven disassembly of connexin 43
Vladimir Akoyev, Dolores J Takemoto
Communicative & Integrative Biology
|
July 19, 2012
The role of Connexin 46 promoter in lens and other hypoxic tissues
Samuel A Molina, Dolores J Takemoto
Investigative Ophthalmology & Visual Science
|
February 26, 2003
IGF-I-induced phosphorylation of connexin 43 by PKCgamma: regulation of gap junctions in rabbit lens epithelial cells
Dingbo Lin, Daniel L Boyle, Dolores J Takemoto
Molecular Vision
|
November 7, 2002
The interaction and phosphorylation of tropomodulin by protein kinase Calpha in N/N 1003A lens epithelial cells
Lynn M Wagner, Velia M Fowler, Dolores J Takemoto
The Journal of Biological Chemistry
|
October 2, 2004
Inhibition of gap junction activity through the release of the C1B domain of protein kinase Cgamma (PKCgamma) from 14-3-3: identification of PKCgamma-binding sites
Thu Annelise Nguyen, Larry J Takemoto, Dolores J Takemoto
Cellular Signalling
|
July 17, 2007
Protein kinase C as a stress sensor
Micheal E Barnett, Daniel K Madgwick, Dolores J Takemoto
Molecular Vision
|
October 7, 2004
Differential phosphorylation of connexin46 and connexin50 by H2O2 activation of protein kinase Cgamma
Dingbo Lin, Samuel Lobell, Andrea Jewell, et al.
Experimental Eye Research
|
May 12, 2007
Protein kinase C gamma mutations in the C1B domain cause caspase-3-linked apoptosis in lens epithelial cells through gap junctions
Dingbo Lin, Denton Shanks, Om Prakash, et al.
Page
of 3