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The Journal of Biological Chemistry
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April 15, 2014
A method for activation of endogenous acid-sensing ion channel 1a (ASIC1a) in the nervous system with high spatial and temporal precision
Tianbo Li, Youshan Yang, Cecilia M Canessa
FEBS Letters
|
May 5, 1986
Volume-dependent and NEM-stimulated K+,Cl- transport is elevated in oxygenated SS, SC and CC human red cells
M Canessa, A Spalvins, R L Nagel
The Journal of Biological Chemistry
|
October 11, 2012
Impact of recovery from desensitization on acid-sensing ion channel-1a (ASIC1a) current and response to high frequency stimulation
Tianbo Li, Youshan Yang, Cecilia M Canessa
The Journal of Membrane Biology
|
November 2, 2013
The molecular organization of nerve membranes : IV. The lipid composition of plasma membranes from squid retinal axons
F Zambrano, M Cellino, M Canessa-Fischer
The Journal of Biological Chemistry
|
August 3, 2010
Asn415 in the beta11-beta12 linker decreases proton-dependent desensitization of ASIC1
Tianbo Li, Youshan Yang, Cecilia M Canessa
The Journal of General Physiology
|
October 30, 2009
The loss and recovery of the sodium pump in perfused giant axons
M Canessa-Fischer, F Zambrano, E Rojas
The Journal of Biological Chemistry
|
December 17, 2008
Interaction of the aromatics Tyr-72/Trp-288 in the interface of the extracellular and transmembrane domains is essential for proton gating of acid-sensing ion channels
Tianbo Li, Youshan Yang, Cecilia M Canessa
The Journal of Biological Chemistry
|
May 19, 2010
Leu85 in the beta1-beta2 linker of ASIC1 slows activation and decreases the apparent proton affinity by stabilizing a closed conformation
Tianbo Li, Youshan Yang, Cecilia M Canessa
Elife
|
May 3, 2019
A valve-like mechanism controls desensitization of functional mammalian isoforms of acid-sensing ion channels
Yangyu Wu, Zhuyuan Chen, Cecilia M Canessa
The Journal of Biological Chemistry
|
June 21, 2023
Phosphatases maintain low catalytic activity of SGK1: DNA damage resets the balance in favor of phosphorylation
Wenxue Gu, Hongyan Zheng, Cecilia M Canessa
Page
of 16
Search research articles
Search
Showing results (31-40 of 158) with videos related to
Sort By:
Page
of 16
The Journal of Biological Chemistry
|
April 15, 2014
A method for activation of endogenous acid-sensing ion channel 1a (ASIC1a) in the nervous system with high spatial and temporal precision
Tianbo Li, Youshan Yang, Cecilia M Canessa
FEBS Letters
|
May 5, 1986
Volume-dependent and NEM-stimulated K+,Cl- transport is elevated in oxygenated SS, SC and CC human red cells
M Canessa, A Spalvins, R L Nagel
The Journal of Biological Chemistry
|
October 11, 2012
Impact of recovery from desensitization on acid-sensing ion channel-1a (ASIC1a) current and response to high frequency stimulation
Tianbo Li, Youshan Yang, Cecilia M Canessa
The Journal of Membrane Biology
|
November 2, 2013
The molecular organization of nerve membranes : IV. The lipid composition of plasma membranes from squid retinal axons
F Zambrano, M Cellino, M Canessa-Fischer
The Journal of Biological Chemistry
|
August 3, 2010
Asn415 in the beta11-beta12 linker decreases proton-dependent desensitization of ASIC1
Tianbo Li, Youshan Yang, Cecilia M Canessa
The Journal of General Physiology
|
October 30, 2009
The loss and recovery of the sodium pump in perfused giant axons
M Canessa-Fischer, F Zambrano, E Rojas
The Journal of Biological Chemistry
|
December 17, 2008
Interaction of the aromatics Tyr-72/Trp-288 in the interface of the extracellular and transmembrane domains is essential for proton gating of acid-sensing ion channels
Tianbo Li, Youshan Yang, Cecilia M Canessa
The Journal of Biological Chemistry
|
May 19, 2010
Leu85 in the beta1-beta2 linker of ASIC1 slows activation and decreases the apparent proton affinity by stabilizing a closed conformation
Tianbo Li, Youshan Yang, Cecilia M Canessa
Elife
|
May 3, 2019
A valve-like mechanism controls desensitization of functional mammalian isoforms of acid-sensing ion channels
Yangyu Wu, Zhuyuan Chen, Cecilia M Canessa
The Journal of Biological Chemistry
|
June 21, 2023
Phosphatases maintain low catalytic activity of SGK1: DNA damage resets the balance in favor of phosphorylation
Wenxue Gu, Hongyan Zheng, Cecilia M Canessa
Page
of 16