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Circulation Research
|
September 23, 2003
Kv1.5 is an important component of repolarizing K+ current in canine atrial myocytes
David Fedida, Jodene Eldstrom, J Christian Hesketh, et al.
American Journal of Physiology. Cell Physiology
|
August 24, 2012
Trafficking of an endogenous potassium channel in adult ventricular myocytes
Tiantian Wang, Yvonne Cheng, Ying Dou, et al.
The Journal of Biological Chemistry
|
June 16, 2005
A novel mechanism for the suppression of a voltage-gated potassium channel by glucose-dependent insulinotropic polypeptide: protein kinase A-dependent endocytosis
Su-Jin Kim, Woo Sung Choi, John Song Mou Han, et al.
Elife
|
September 14, 2023
A generic binding pocket for small molecule <i>I</i><sub></sub> activators at the extracellular inter-subunit interface of KCNQ1 and KCNE1 channel complexes
Magnus Chan, Harutyun Sahakyan, Jodene Eldstrom, et al.
The Journal of Physiology
|
June 15, 2004
Heterogeneous expression of repolarizing, voltage-gated K+ currents in adult mouse ventricles
Sylvain Brunet, Franck Aimond, Huilin Li, et al.
The Journal of Physiology
|
August 14, 2009
Kif5b is an essential forward trafficking motor for the Kv1.5 cardiac potassium channel
Alireza Dehghani Zadeh, Yvonne Cheng, Hongjian Xu, et al.
Assay and Drug Development Technologies
|
April 20, 2004
Flux assays in high throughput screening of ion channels in drug discovery
Sikander Gill, Raj Gill, Soo Sen Lee, et al.
The Journal of Biological Chemistry
|
May 22, 2002
Amino-terminal determinants of U-type inactivation of voltage-gated K+ channels
Harley T Kurata, Gordon S Soon, Jodene R Eldstrom, et al.
The Journal of Physiology
|
April 11, 2016
AMP-activated protein kinase inhibits Kv 1.5 channel currents of pulmonary arterial myocytes in response to hypoxia and inhibition of mitochondrial oxidative phosphorylation
Javier Moral-Sanz, Amira D Mahmoud, Fiona A Ross, et al.
Nature Communications
|
June 29, 2022
Structural and electrophysiological basis for the modulation of KCNQ1 channel currents by ML277
Katrien Willegems, Jodene Eldstrom, Efthimios Kyriakis, et al.
Page
of 13
Search research articles
Search
Showing results (91-100 of 122) with videos related to
Sort By:
Page
of 13
Circulation Research
|
September 23, 2003
Kv1.5 is an important component of repolarizing K+ current in canine atrial myocytes
David Fedida, Jodene Eldstrom, J Christian Hesketh, et al.
American Journal of Physiology. Cell Physiology
|
August 24, 2012
Trafficking of an endogenous potassium channel in adult ventricular myocytes
Tiantian Wang, Yvonne Cheng, Ying Dou, et al.
The Journal of Biological Chemistry
|
June 16, 2005
A novel mechanism for the suppression of a voltage-gated potassium channel by glucose-dependent insulinotropic polypeptide: protein kinase A-dependent endocytosis
Su-Jin Kim, Woo Sung Choi, John Song Mou Han, et al.
Elife
|
September 14, 2023
A generic binding pocket for small molecule <i>I</i><sub></sub> activators at the extracellular inter-subunit interface of KCNQ1 and KCNE1 channel complexes
Magnus Chan, Harutyun Sahakyan, Jodene Eldstrom, et al.
The Journal of Physiology
|
June 15, 2004
Heterogeneous expression of repolarizing, voltage-gated K+ currents in adult mouse ventricles
Sylvain Brunet, Franck Aimond, Huilin Li, et al.
The Journal of Physiology
|
August 14, 2009
Kif5b is an essential forward trafficking motor for the Kv1.5 cardiac potassium channel
Alireza Dehghani Zadeh, Yvonne Cheng, Hongjian Xu, et al.
Assay and Drug Development Technologies
|
April 20, 2004
Flux assays in high throughput screening of ion channels in drug discovery
Sikander Gill, Raj Gill, Soo Sen Lee, et al.
The Journal of Biological Chemistry
|
May 22, 2002
Amino-terminal determinants of U-type inactivation of voltage-gated K+ channels
Harley T Kurata, Gordon S Soon, Jodene R Eldstrom, et al.
The Journal of Physiology
|
April 11, 2016
AMP-activated protein kinase inhibits Kv 1.5 channel currents of pulmonary arterial myocytes in response to hypoxia and inhibition of mitochondrial oxidative phosphorylation
Javier Moral-Sanz, Amira D Mahmoud, Fiona A Ross, et al.
Nature Communications
|
June 29, 2022
Structural and electrophysiological basis for the modulation of KCNQ1 channel currents by ML277
Katrien Willegems, Jodene Eldstrom, Efthimios Kyriakis, et al.
Page
of 13