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G Nichols

Showing results (291-300 of 547) with videos related to

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Physiological Genomics|December 3, 2009
Genes controlling postural changes in blood pressure: comprehensive association analysis of ATP-sensitive potassium channel genes KCNJ8 and ABCC9Justine A Ellis, Angela Lamantia, Raul Chavez, et al.
The Journal of Biological Chemistry|September 25, 2003
Human RNase H1 uses one tryptophan and two lysines to position the enzyme at the 3'-DNA/5'-RNA terminus of the heteroduplex substrateWalt F Lima, Hongjiang Wu, Josh G Nichols, 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 subunitsYu-Wen Lin, Alejandro Akrouh, YeouChing Hsu, et al.
Circulation|September 14, 2011
An open sarcolemmal adenosine triphosphate-sensitive potassium channel is necessary for detrimental myocyte swelling secondary to stressAngela D Sellitto, Ashraf S Al-Dadah, Richard B Schuessler, et al.
The Journal of Biological Chemistry|June 27, 2000
A novel method for measurement of submembrane ATP concentrationF M Gribble, G Loussouarn, S J Tucker, et al.
Plos One|March 18, 2021
Regulation of sperm motility in Eastern oyster (Crassostrea virginica) spawning naturally in seawater with low salinityZoe G Nichols, Scott Rikard, Sayyed Mohammad Hadi Alavi, et al.
The Journal of Biological Chemistry|July 24, 2009
Binding and cleavage specificities of human Argonaute2Walt F Lima, Hongjiang Wu, Josh G Nichols, et al.
Heart Rhythm|July 5, 2015
Electrophysiologic consequences of KATP gain of function in the heart: Conduction abnormalities in Cantu syndromeMark D Levin, Haixia Zhang, Keita Uchida, et al.
Scientific Reports|October 17, 2015
Modular Design of the Selectivity Filter Pore Loop in a Novel Family of Prokaryotic 'Inward Rectifier' (NirBac) channelsLejla Zubcevic, Shizhen Wang, Vassiliy N Bavro, et al.
Diabetes|February 24, 2007
A mutation in the TMD0-L0 region of sulfonylurea receptor-1 (L225P) causes permanent neonatal diabetes mellitus (PNDM)Ricard Masia, Diva D De Leon, Courtney MacMullen, et al.
Pageof 55

Showing results (291-300 of 547) with videos related to

Sort By:
Pageof 55
Physiological Genomics|December 3, 2009
Genes controlling postural changes in blood pressure: comprehensive association analysis of ATP-sensitive potassium channel genes KCNJ8 and ABCC9Justine A Ellis, Angela Lamantia, Raul Chavez, et al.
The Journal of Biological Chemistry|September 25, 2003
Human RNase H1 uses one tryptophan and two lysines to position the enzyme at the 3'-DNA/5'-RNA terminus of the heteroduplex substrateWalt F Lima, Hongjiang Wu, Josh G Nichols, 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 subunitsYu-Wen Lin, Alejandro Akrouh, YeouChing Hsu, et al.
Circulation|September 14, 2011
An open sarcolemmal adenosine triphosphate-sensitive potassium channel is necessary for detrimental myocyte swelling secondary to stressAngela D Sellitto, Ashraf S Al-Dadah, Richard B Schuessler, et al.
The Journal of Biological Chemistry|June 27, 2000
A novel method for measurement of submembrane ATP concentrationF M Gribble, G Loussouarn, S J Tucker, et al.
Plos One|March 18, 2021
Regulation of sperm motility in Eastern oyster (Crassostrea virginica) spawning naturally in seawater with low salinityZoe G Nichols, Scott Rikard, Sayyed Mohammad Hadi Alavi, et al.
The Journal of Biological Chemistry|July 24, 2009
Binding and cleavage specificities of human Argonaute2Walt F Lima, Hongjiang Wu, Josh G Nichols, et al.
Heart Rhythm|July 5, 2015
Electrophysiologic consequences of KATP gain of function in the heart: Conduction abnormalities in Cantu syndromeMark D Levin, Haixia Zhang, Keita Uchida, et al.
Scientific Reports|October 17, 2015
Modular Design of the Selectivity Filter Pore Loop in a Novel Family of Prokaryotic 'Inward Rectifier' (NirBac) channelsLejla Zubcevic, Shizhen Wang, Vassiliy N Bavro, et al.
Diabetes|February 24, 2007
A mutation in the TMD0-L0 region of sulfonylurea receptor-1 (L225P) causes permanent neonatal diabetes mellitus (PNDM)Ricard Masia, Diva D De Leon, Courtney MacMullen, et al.
Pageof 55