Involvement of a Gardos-type potassium channel in head activator-induced mitosis of BON cells.
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Summary
Pharmacology and RNA analysis suggest identity with the recently cloned Gardos-type potassium channel in the human neuroendocrine cell line BON, used to study second messengers involved in signal transduction for entry into mitosis.
- Type
- article
- Published
- 1998-06-01
- Cited by
- 22
- References
- 21
- OpenAlex
- https://openalex.org/W2032533800
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:12640987
Keywords
Activator (genetics), Mitosis, Cell biology, Pertussis toxin, Autocrine signalling
References
- Head-activator induced mitosis of NH15-CA2 cells requires calcium influx and hyperpolarization.
- Neuronal control of development in hydra.
- Head activator acts as an autocrine growth factor for NH15‐CA2 cells in the G2/mitosis transition.
- Human carcinoid cell production of paracrine growth factors that can stimulate fibroblast and endothelial cell growth.
- Studies of growth regulation in a neuroendocrine cell line.
- Characterisation of two types of head activator receptor on hydra cells.
- Flow cytometric analysis of G1- and G2/M-phase subpopulations in mammalian cell nuclei using side scatter and DNA content measurements.
- A human intermediate conductance calcium-activated potassium channel.
- Novel action of transforming growth factor β1 in functioning human pancreatic carcinoid cells
- Clotrimazole inhibits cell proliferation in vitro and in vivo
- hSK4, a member of a novel subfamily of calcium-activated potassium channels.
- A Novel Gene, hKCa4, Encodes the Calcium-activated Potassium Channel in Human T Lymphocytes*
- Mitosis-arresting effect of the calcium channel inhibitor SK&F 96365 on human leukemia cells.
- Inhibition of human brain tumor cell growth by a receptor-operated Ca2+ channel blocker.
- Head activator as a potential serum marker for brain tumour analysis.
- HPLC measurement, blood distribution, and pharmacokinetics of oral clotrimazole, potentially useful antisickling agent.
- Receptor‐mediated autocrine growth‐stimulatory effect of 5‐hydroxytryptamine on cultured human pancreatic carcinoid cells
- A new generation of Ca2+ indicators with greatly improved fluorescence properties.
- Establishment and characterization of a human carcinoid in nude mice and effect of various agents on tumor growth.
- New Molecular Aspects for the Diagnosis and Treatment of Neuroendocrine Gastroenteropancreatic Tumors
Cited by
- Neurotensin, schizophrenia, and antipsychotic drug action.
- Regenerative Medizin
- Function of the neuropeptide head activator for early neural and neuroendocrine development.
- Role of the G-Protein-Coupled Receptor GPR12 as High-Affinity Receptor for Sphingosylphosphorylcholine and Its Expression and Function in Brain Development
- Inhibitory Effects of Nicorandil on Rat Mesangial Cell Proliferation via the Protein Kinase G Pathway
- Characterisation and differential expression of two very closely related G-protein-coupled receptors, GPR139 and GPR142, in mouse tissue and during mouse development.
- The neuropeptide head activator is a high-affinity ligand for the orphan G-protein-coupled receptor GPR37
- Role of Voltage-gated Potassium Channels in Cancer
- Selective intermediate‐/small‐conductance calcium‐activated potassium channel (KCNN4) blockers are potent and effective therapeutics in experimental brain oedema and traumatic brain injury caused by acute subdural haematoma
- Characterization of the VPS10 Domain of SorLA/LR11 as Binding Site for the Neuropeptide HA
- Bacillus intermedius ribonuclease as inhibitor of cell proliferation and membrane current.
- Tetraethylammonium Inhibits Glioma Cells via Increasing Production of Intracellular Reactive Oxygen Species
- Voltage-gated potassium channels in cell proliferation.
- A head-activator binding protein is present in hydra in a soluble and a membrane-anchored form.
- Regenerative Medicine for Diseases of the Head and Neck: Principles of In vivo Regeneration
- Ectodomain shedding, translocation and synthesis of SorLA are stimulated by its ligand head activator.
- PLASMA FOCUS DEVICE AND AT LOW DOSE RATE ON HUMAN TUMOUR CELLS EARLY EFFECTS COMPARISON OF X RAYS DELIVERED AT HIGH-DOSE-RATE PULSES BY A
- The neuropeptide head activator induces activation and translocation of the growth-factor-regulated Ca(2+)-permeable channel GRC.
- Role of ion channels during cell division.
- Potassium Channels: Oncogenic Potential and Therapeutic Target for Cancers
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