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The Journal of Physiology
|
August 20, 2005
A difference in inward rectification and polyamine block and permeation between the Kir2.1 and Kir3.1/Kir3.4 K+ channels
Samy M Y Makary, Tom W Claydon, Decha Enkvetchakul, et al.
Diabetes
|
October 27, 2006
Expression of ATP-insensitive KATP channels in pancreatic beta-cells underlies a spectrum of diabetic phenotypes
Joseph C Koster, Maria S Remedi, Ricard Masia, et al.
The Journal of Biological Chemistry
|
September 28, 2004
Functional characterization of a prokaryotic Kir channel
Decha Enkvetchakul, Jaya Bhattacharyya, Iana Jeliazkova, et al.
The Journal of Biological Chemistry
|
January 10, 2013
Scanning the topography of polyamine blocker binding in an inwardly rectifying potassium channel
Harley T Kurata, Alejandro Akrouh, Jenny B W Li, et al.
Journal of Molecular and Cellular Cardiology
|
September 12, 2009
Differential K(ATP) channel pharmacology in intact mouse heart
Alexey V Glukhov, Thomas P Flagg, Vadim V Fedorov, et al.
Pediatric Diabetes
|
August 7, 2009
Successful sulfonylurea treatment of an insulin-naïve neonate with diabetes mellitus due to a KCNJ11 mutation
Jennifer A Wambach, Bess A Marshall, Joseph C Koster, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
March 16, 2011
Mechanism for selectivity-inactivation coupling in KcsA potassium channels
Wayland W L Cheng, Jason G McCoy, Ameer N Thompson, et al.
Diabetes
|
January 30, 2007
An ATP-binding mutation (G334D) in KCNJ11 is associated with a sulfonylurea-insensitive form of developmental delay, epilepsy, and neonatal diabetes
Ricard Masia, Joseph C Koster, Stefano Tumini, et al.
Physiological Genomics
|
December 3, 2009
Genes controlling postural changes in blood pressure: comprehensive association analysis of ATP-sensitive potassium channel genes KCNJ8 and ABCC9
Justine A Ellis, Angela Lamantia, Raul Chavez, et al.
Channels (Austin, Tex.)
|
May 8, 2012
Compound heterozygous mutations in the SUR1 (ABCC 8) subunit of pancreatic K(ATP) channels cause neonatal diabetes by perturbing the coupling between Kir6.2 and SUR1 subunits
Yu-Wen Lin, Alejandro Akrouh, YeouChing Hsu, et al.
Page
of 22
Search research articles
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Showing results (91-100 of 219) with videos related to
Sort By:
Page
of 22
The Journal of Physiology
|
August 20, 2005
A difference in inward rectification and polyamine block and permeation between the Kir2.1 and Kir3.1/Kir3.4 K+ channels
Samy M Y Makary, Tom W Claydon, Decha Enkvetchakul, et al.
Diabetes
|
October 27, 2006
Expression of ATP-insensitive KATP channels in pancreatic beta-cells underlies a spectrum of diabetic phenotypes
Joseph C Koster, Maria S Remedi, Ricard Masia, et al.
The Journal of Biological Chemistry
|
September 28, 2004
Functional characterization of a prokaryotic Kir channel
Decha Enkvetchakul, Jaya Bhattacharyya, Iana Jeliazkova, et al.
The Journal of Biological Chemistry
|
January 10, 2013
Scanning the topography of polyamine blocker binding in an inwardly rectifying potassium channel
Harley T Kurata, Alejandro Akrouh, Jenny B W Li, et al.
Journal of Molecular and Cellular Cardiology
|
September 12, 2009
Differential K(ATP) channel pharmacology in intact mouse heart
Alexey V Glukhov, Thomas P Flagg, Vadim V Fedorov, et al.
Pediatric Diabetes
|
August 7, 2009
Successful sulfonylurea treatment of an insulin-naïve neonate with diabetes mellitus due to a KCNJ11 mutation
Jennifer A Wambach, Bess A Marshall, Joseph C Koster, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
March 16, 2011
Mechanism for selectivity-inactivation coupling in KcsA potassium channels
Wayland W L Cheng, Jason G McCoy, Ameer N Thompson, et al.
Diabetes
|
January 30, 2007
An ATP-binding mutation (G334D) in KCNJ11 is associated with a sulfonylurea-insensitive form of developmental delay, epilepsy, and neonatal diabetes
Ricard Masia, Joseph C Koster, Stefano Tumini, et al.
Physiological Genomics
|
December 3, 2009
Genes controlling postural changes in blood pressure: comprehensive association analysis of ATP-sensitive potassium channel genes KCNJ8 and ABCC9
Justine A Ellis, Angela Lamantia, Raul Chavez, et al.
Channels (Austin, Tex.)
|
May 8, 2012
Compound heterozygous mutations in the SUR1 (ABCC 8) subunit of pancreatic K(ATP) channels cause neonatal diabetes by perturbing the coupling between Kir6.2 and SUR1 subunits
Yu-Wen Lin, Alejandro Akrouh, YeouChing Hsu, et al.
Page
of 22