Contribution of voltage‐gated potassium channels to the regulation of apoptosis
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Summary
The present review summarizes the current understanding of the function of Kv channels in apoptosis in several cell types as well as the role of mitochondrial Kv1.3 in the regulation of cell death in lymphocytes.
- Type
- review
- Published
- 2010-05-17
- Cited by
- 88
- References
- 112
- OpenAlex
- https://openalex.org/W1980482797
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:28285923
Keywords
Potassium channel, Potassium, Voltage-gated potassium channel, Voltage-gated ion channel, Apoptosis
References
- Mitochondrial Permeability Transition
- Expression of K+ channels in normal and cancerous human breast.
- Mitochondrial potassium channels
- Potassium channels in the regulation of pulmonary artery smooth muscle cell proliferation and apoptosis: pharmacotherapeutic implications
- Potassium channel gene therapy can prevent neuron death resulting from necrotic and apoptotic insults
- Cell volume regulatory ion channels in cell proliferation and cell death.
- HERG K+ channel, a regulator of tumor cell apoptosis and proliferation.
- Mitochondrial transport of cations: channels, exchangers, and permeability transition.
- Activity of potassium channel-blockers in breast cancer.
- Deregulation of 2 Potassium Channels in Pancreas Adenocarcinomas: Implication of KV1.3 Gene Promoter Methylation
- Actinomycin D-induced apoptosis involves the potassium channel Kv1.3.
- Death or survival: membrane ceramide controls the fate and activation of antigen-specific T-cells depending on signal strength and duration.
- Attenuated K+ channel gene transcription in primary pulmonary hypertension.
- Ca2+-activated K channel of the BK-type in the inner mitochondrial membrane of a human glioma cell line.
- Apoptosis, cell volume regulation and volume-regulatory chloride channels.
- Tyrosine Phosphorylation-dependent Suppression of a Voltage-gated K+ Channel in T Lymphocytes upon Fas Stimulation*
- Kv1.1 and Kv1.3 channels contribute to the degeneration of retinal ganglion cells after optic nerve transection in vivo
- Inhibitory effects of oxidants on n-type K+ channels in T lymphocytes and Xenopus oocytes
- VDAC2 Inhibits BAK Activation and Mitochondrial Apoptosis
- Re‐evaluation of the distinction between type I and type II cells: The necessary role of the mitochondria in both the extrinsic and intrinsic signaling pathways upon fas receptor activation
Cited by
- Low-dose photon irradiation alters cell differentiation via activation of hIK channels
- Microglial K+ Channel Expression in Young Adult and Aged Mice
- Mitochondrial Potassium Channels as Pharmacological Target for Cardioprotective Drugs
- Large T-antigen up-regulates Kv4.3 K⁺ channels through Sp1, and Kv4.3 K⁺ channels contribute to cell apoptosis and necrosis through activation of calcium/calmodulin-dependent protein kinase II.
- Enhancement of Kv1.3 Potassium Conductance by Extremely Low Frequency Electromagnetic Field
- Identification of a voltage-gated potassium channel in gerbil hippocampal mitochondria.
- Nuclear atrophy of retinal ganglion cells precedes the bax-dependent stage of apoptosis.
- Ion channels and apoptosis in cancer
- The sorting of a small potassium channel in mammalian cells can be shifted between mitochondria and plasma membrane.
- How many types of large conductance Ca⁺²-activated potassium channels exist in brain mitochondrial inner membrane: evidence for a new mitochondrial large conductance Ca²⁺-activated potassium channel in brain mitochondria.
- Modulation of the Voltage-gated Potassium Channel (Kv4.3) and the Auxiliary Protein (KChIP3) Interactions by the Current Activator NS5806*
- Regulation of the Voltage Gated K+ Channel Kv1.3 by Recombinant Human Klotho Protein
- Physiology of potassium channels in the inner membrane of mitochondria
- Targeting a mitochondrial potassium channel to fight cancer.
- The voltage-dependent K+ channels Kv1.3 and Kv1.5 in human cancer
- Sustained production of ROS triggers compensatory proliferation and is required for regeneration to proceed
- Identification of two-pore domain potassium channels as potent modulators of osmotic volume regulation in human T lymphocytes.
- Up-regulation of Kv1.3 Channels by Janus Kinase 2
- Mitochondrially targeted anti-cancer agents.
- Ion channels in the regulation of apoptosis.
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