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Pore- and State-Dependent Cadmium Block of IKs Channels Formed with MinK-55C and Wild-Type KCNQ1 Subunits.pdf
Pore- and State-Dependent Cadmium Block of IKs Channels Formed with MinK-55C and Wild-Type KCNQ1 Subunits
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camp-dependent regulation of iks single-channel kinetics.[2017][j gen physiol][10.1085jgp.201611734].pdf
camp-dependent regulation of iks single-channel kinetics.[2017][j gen physiol][10.1085jgp.201611734]
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combined pharmacological block of ikr and iks increases short-term qt interval variability and provokes torsades de pointes.pdf
combined pharmacological block of ikr and iks increases short-term qt interval variability and provokes torsades de pointes
11
Mechanisms of β-Adrenergic Modulation of IKs in the Guinea-Pig Ventricle Insights from Experimental and Model-Based Analysis.pdf
Mechanisms of β-Adrenergic Modulation of IKs in the Guinea-Pig Ventricle Insights from Experimental and Model-Based Analysis
10
Both β-adrenergic receptor stimulation and cardiac tissue type have important roles in elucidating the functional effects of IKs channel blockers in vitro.pdf
Both β-adrenergic receptor stimulation and cardiac tissue type have important roles in elucidating the functional effects of IKs channel blockers in vitro
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BACE1 modulates gating of KCNQ1 (Kv7.1) and cardiac delayed rectifier KCNQ1KCNE1 (IKs).pdf
BACE1 modulates gating of KCNQ1 (Kv7.1) and cardiac delayed rectifier KCNQ1KCNE1 (IKs)
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Synergistic modulation of KCNQ1KCNE1 K channels (IKs) by phosphatidylinositol 4,5-bisphosphate (PIP2) and [ATP]i.pdf
Synergistic modulation of KCNQ1KCNE1 K channels (IKs) by phosphatidylinositol 4,5-bisphosphate (PIP2) and [ATP]i

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