Large-conductance voltage- and Ca2+-activated potassium (BK) channels are critical modulators of cellular excitability throughout the cardiovascular and nervous systems. The first aim of this work focuses on a novel role for BK channels in regulating cardiac pacing. Recently, BK channels were implicated in heart rate regulation, but the underlying mechanism was unclear. We hypothesized that BK channels regulate heart rate by modulating the intrinsic excitability of sinoatrial node cells (SANCs), the predominant cardiac pacemaking cells. We found that BK channel protein was expressed in SANCs, and that elimination of BK currents via pharmacological inhibition and genetic ablation reduces SANC excitability. Additionally, we characterized...
PhDATP-sensitive potassium channels (KATP) open in response to metabolic challenge. They form of por...
The rat embryonic cardiomyoblast-derived H9c2 cell line is increasingly used for studies into cardio...
This is the second of the two White Papers from the fourth UC Davis Cardiovascular Symposium Systems...
Calcium and voltage-activated potassium (BK) channels are key actors in cell physiology, both in neu...
The large-conductance voltage and calcium-sensitive BK channel is important in many electrically act...
This research was originally published in the Journal of Biological Chemistry. Aziz, Q., et al. (201...
Extensive evidence indicates that small-conductance Ca2+-activated K+ channels (SK channels) help re...
© Springer-Verlag Berlin Heidelberg 2012. All rights are reserved. Calcium-activated potassium BK ch...
This is an Accepted Manuscript of an article published by Taylor & Francis in Channels on 9 October ...
We examined the major possible mechanisms for the left shift of the BK channel I-V relationship in n...
This paper is the outcome of the fourth UC Davis Systems Approach to Understanding Cardiac Excitatio...
This is the second of the two White Papers from the fourth UC Davis Cardiovascular Symposium Systems...
This paper is the outcome of the fourth UC Davis Systems Approach to Understanding Cardiac Excitatio...
This is the second of the two White Papers from the fourth UC Davis Cardiovascular Symposium Systems...
The last 20 years of research into ion channels has unraveled unexpected features of the BKca channe...
PhDATP-sensitive potassium channels (KATP) open in response to metabolic challenge. They form of por...
The rat embryonic cardiomyoblast-derived H9c2 cell line is increasingly used for studies into cardio...
This is the second of the two White Papers from the fourth UC Davis Cardiovascular Symposium Systems...
Calcium and voltage-activated potassium (BK) channels are key actors in cell physiology, both in neu...
The large-conductance voltage and calcium-sensitive BK channel is important in many electrically act...
This research was originally published in the Journal of Biological Chemistry. Aziz, Q., et al. (201...
Extensive evidence indicates that small-conductance Ca2+-activated K+ channels (SK channels) help re...
© Springer-Verlag Berlin Heidelberg 2012. All rights are reserved. Calcium-activated potassium BK ch...
This is an Accepted Manuscript of an article published by Taylor & Francis in Channels on 9 October ...
We examined the major possible mechanisms for the left shift of the BK channel I-V relationship in n...
This paper is the outcome of the fourth UC Davis Systems Approach to Understanding Cardiac Excitatio...
This is the second of the two White Papers from the fourth UC Davis Cardiovascular Symposium Systems...
This paper is the outcome of the fourth UC Davis Systems Approach to Understanding Cardiac Excitatio...
This is the second of the two White Papers from the fourth UC Davis Cardiovascular Symposium Systems...
The last 20 years of research into ion channels has unraveled unexpected features of the BKca channe...
PhDATP-sensitive potassium channels (KATP) open in response to metabolic challenge. They form of por...
The rat embryonic cardiomyoblast-derived H9c2 cell line is increasingly used for studies into cardio...
This is the second of the two White Papers from the fourth UC Davis Cardiovascular Symposium Systems...