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The Journal of Biological Chemistry
|
September 13, 2011
Disruption of the interface between the pleckstrin homology (PH) and kinase domains of Akt protein is sufficient for hydrophobic motif site phosphorylation in the absence of mTORC2
Noel A Warfel, Matt Niederst, Alexandra C Newton
The Journal of Biological Chemistry
|
August 12, 2006
Targeting protein kinase C activity reporter to discrete intracellular regions reveals spatiotemporal differences in agonist-dependent signaling
Lisa L Gallegos, Maya T Kunkel, Alexandra C Newton
The Journal of Biological Chemistry
|
April 17, 2013
Electrostatic and hydrophobic interactions differentially tune membrane binding kinetics of the C2 domain of protein kinase Cα
Angela M Scott, Corina E Antal, Alexandra C Newton
Cold Spring Harbor Perspectives in Biology
|
August 3, 2016
Second Messengers
Alexandra C Newton, Martin D Bootman, John D Scott
Annual Review of Pharmacology and Toxicology
|
September 30, 2020
PHLPPing the Script: Emerging Roles of PHLPP Phosphatases in Cell Signaling
Timothy R Baffi, Ksenya Cohen-Katsenelson, Alexandra C Newton
Science Signaling
|
May 12, 2016
Science Signaling Podcast for 10 May 2016: PKCα in Alzheimer's disease
Alexandra C Newton, Rudolph E Tanzi, Annalisa M VanHook
Clinical Science (London, England : 1979)
|
July 20, 2016
Protein kinase C mechanisms that contribute to cardiac remodelling
Alexandra C Newton, Corina E Antal, Susan F Steinberg
Molecular Cell
|
March 28, 2007
PHLPP and a second isoform, PHLPP2, differentially attenuate the amplitude of Akt signaling by regulating distinct Akt isoforms
John Brognard, Emma Sierecki, Tianyan Gao, et al.
The Journal of Biological Chemistry
|
October 31, 2006
A single residue in the C1 domain sensitizes novel protein kinase C isoforms to cellular diacylglycerol production
Daniel R Dries, Lisa L Gallegos, Alexandra C Newton
The FEBS Journal
|
February 21, 2012
Suppression of survival signalling pathways by the phosphatase PHLPP
Audrey K O'Neill, Matthew J Niederst, Alexandra C Newton
Page
of 15
Search research articles
Search
Showing results (51-60 of 143) with videos related to
Sort By:
Page
of 15
The Journal of Biological Chemistry
|
September 13, 2011
Disruption of the interface between the pleckstrin homology (PH) and kinase domains of Akt protein is sufficient for hydrophobic motif site phosphorylation in the absence of mTORC2
Noel A Warfel, Matt Niederst, Alexandra C Newton
The Journal of Biological Chemistry
|
August 12, 2006
Targeting protein kinase C activity reporter to discrete intracellular regions reveals spatiotemporal differences in agonist-dependent signaling
Lisa L Gallegos, Maya T Kunkel, Alexandra C Newton
The Journal of Biological Chemistry
|
April 17, 2013
Electrostatic and hydrophobic interactions differentially tune membrane binding kinetics of the C2 domain of protein kinase Cα
Angela M Scott, Corina E Antal, Alexandra C Newton
Cold Spring Harbor Perspectives in Biology
|
August 3, 2016
Second Messengers
Alexandra C Newton, Martin D Bootman, John D Scott
Annual Review of Pharmacology and Toxicology
|
September 30, 2020
PHLPPing the Script: Emerging Roles of PHLPP Phosphatases in Cell Signaling
Timothy R Baffi, Ksenya Cohen-Katsenelson, Alexandra C Newton
Science Signaling
|
May 12, 2016
Science Signaling Podcast for 10 May 2016: PKCα in Alzheimer's disease
Alexandra C Newton, Rudolph E Tanzi, Annalisa M VanHook
Clinical Science (London, England : 1979)
|
July 20, 2016
Protein kinase C mechanisms that contribute to cardiac remodelling
Alexandra C Newton, Corina E Antal, Susan F Steinberg
Molecular Cell
|
March 28, 2007
PHLPP and a second isoform, PHLPP2, differentially attenuate the amplitude of Akt signaling by regulating distinct Akt isoforms
John Brognard, Emma Sierecki, Tianyan Gao, et al.
The Journal of Biological Chemistry
|
October 31, 2006
A single residue in the C1 domain sensitizes novel protein kinase C isoforms to cellular diacylglycerol production
Daniel R Dries, Lisa L Gallegos, Alexandra C Newton
The FEBS Journal
|
February 21, 2012
Suppression of survival signalling pathways by the phosphatase PHLPP
Audrey K O'Neill, Matthew J Niederst, Alexandra C Newton
Page
of 15