Action potentials in vertebrate neurons are followed by an afterhyperpolarization (AHP) that may persist for several seconds and may have profound consequences for the firing pattern of the neuron. Each component of the AHP is kinetically distinct and is mediated by different calcium-activated potassium channels. The protein encoded by this gene is activated before membrane hyperpolarization and is thought to regulate neuronal excitability by contributing to the slow component of synaptic AHP. This gene is a member of the KCNN family of potassium channel genes. The encoded protein is an integral membrane protein that forms a voltage-independent calcium-activated channel with three other calmodulin-binding subunits. Alternate splicing of this gene results in multiple transcript variants. [provided by RefSeq, May 2013 ...
Forms a voltage-independent potassium channel activated by intracellular calcium. Activation is followed by membrane hyperpolarization. Thought to regulate neuronal excitability by contributing to the slow component of synaptic afterhyperpolarization. The channel is blocked by apamin (By similarity).
[ChEMBL Target Description] ID:CHEMBL3381, Name:Small conductance calcium-activated potassium channel protein 3, Description:, Synonyms:
Background. Small conductance Ca2+-activated K+ (SK) channels play significant roles in regulating the excitability of cardiomyocytes (CMs). SK channels are unique in that they are gated solely by intracellular Ca2+ and hence, function to integrate intracellular Ca2+ and membrane potentials on a beat-to-beat basis in the heart. Our previous studies revealed that cardiac SK2 channels coupled with L-type Ca2+ channels (LTCCs) through a physical bridge, α-actinin2, suggesting that LTCCs may be functionally coupled with SK2 channels by providing local Ca2+ domain to activate the SK channels. However, a recent study suggested that sarcoplasmic reticulum (SR) Ca2+ release is necessary and sufficient for the activation of cardiac SK channels. The objective of the study is to examine the mechanisms of SK channel activation in native CMs.. Methods and Results. By using a voltage-clamp protocol in rabbit CMs to activate LTCCs followed immediately by a test voltage to monitor the SK currents, we recorded ...
TY - JOUR. T1 - SK channels and NMDA receptors form a Ca2+-mediated feedback loop in dendritic spines. AU - Ngo-Anh, Thu Jennifer. AU - Bloodgood, Brenda L.. AU - Lin, Michael. AU - Sabatini, Bernardo L.. AU - Maylie, James. AU - Adelman, John. PY - 2005/5. Y1 - 2005/5. N2 - Small-conductance Ca2+-activated K+ channels (SK channels) influence the induction of synaptic plasticity at hippocampal CA3-CA1 synapses. We find that in mice, SK channels are localized to dendritic spines, and their activity reduces the amplitude of evoked synaptic potentials in an NMDA receptor (NMDAR)-dependent manner. Using combined two-photon laser scanning microscopy and two-photon laser uncaging of glutamate, we show that SK channels regulate NMDAR-dependent Ca2+ influx within individual spines. SK channels are tightly coupled to synaptically activated Ca2+ sources, and their activity reduces the amplitude of NMDAR-dependent Ca2+ transients. These effects are mediated by a feedback loop within the spine head; during ...
Atrial fibrillation (AF) is the most common type of arrhythmia. Current pharmacological treatment for AF is moderately effective and/or increases the risk of serious ventricular adverse effects. To avoid ventricular adverse effects, a new target has been considered, the small conductance calcium-activated K+ channels (KCa2.X, SK channels). In the heart, KCa2.X channels are functionally more important in atria compared to ventricles, and pharmacological inhibition of the channel confers atrial selective prolongation of the cardiac action potential and converts AF to sinus rhythm in animal models of AF. Whether antiarrhythmic drugs (AADs) recommended for treating AF target KCa2.X channels is unknown. To this end, we tested a large number of AADs on the human KCa2.2 and KCa2.3 channels to assess their effect on this new target using automated whole-cell patch clamp. Of the AADs recommended for treatment of AF only dofetilide and propafenone inhibited hKCa2.X channels, with no subtype selectivity. ...
The purpose of the present study was to examine how apamin interacts with the three cloned subtypes of small-conductance Ca2+-activated K+ channels (hSK1, rSK2 and rSK3). Expression of the SK channel subtypes in Xenopus laevis oocytes resulted in large outward currents (0.5-5 microA) after direct in …
Drosophila nociceptive neurons convert high-intensity stimuli into characteristic fluctuations of firing rates, quiescent periods of which are regulated by hyperpolarization through small conductance Ca2+-activated K+ channels.
KCNN4 antibody (potassium intermediate/small conductance calcium-activated channel, subfamily N, member 4) for ELISA, WB. Anti-KCNN4 pAb (GTX87069) is tested in Human, Mouse, Rat samples. 100% Ab-Assurance.
4J9Z: Unstructured to structured transition of an intrinsically disordered protein peptide in coupling Ca2+-sensing and SK channel activation.
human KCNN3 protein: a small conductance calcium-regulated potassium channel; mutations in gene shows a possible association with schizophrenia; RefSeq NM_002249
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1-155-2 11F2 2D1 HB7 L17F12 L27 MY31 SJ25C1 (also known as SJ25-C1) SK1 SK3 (also known as Leu3a) SK7 (also known as Leu-4) TB28-2 ...
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MGI protein superfamily detail pages represent the protein classification set for a homeomorphic superfamily from the Protein Information Resource SuperFamily (PIRSF) site.. Mouse superfamily members are shown with links to their corresponding HomoloGene Classes. Note that pseudogenes are included in PIRSF families but not in orthology sets used here. You can select a given mouse superfamily member and download (or forward to NCBI BLAST) FASTA formatted protein sequences of that mouse gene and its mouse, human and rat homologs, as defined in the corresponding HomoloGene Class. The numbers of mouse, human and rat genes in the HomoloGene Class are shown. You can also "Select all" mouse superfamily members to obtain their protein sequences and the protein sequences for all mouse, human and rat homologs of the mouse superfamily members.. The number of protein sequences returned does not always match the numbers of homologs shown, because the same protein sequence can be associated with multiple ...
Resveratrol has been reported to stimulate BKCa currents in human vascular endothelial cells and human cardiac fibroblasts [24, 51], which might be associated with its cardioprotective effect. The present study demonstrated that resveratrol could stimulate the activities of BKCa channels in cortical neurons. In fact, BKCa channel is considered to be one of the intrinsic molecular determinants for the control of neuronal excitability in the central nervous system and play a role in the etiology of some neurological diseases. Recent studies have demonstrated the implication of BKCa channels in Fragile X Syndrome (FXS) pathology [22]. In fact, a selective BKCa channel opener molecule (BMS-204352) rescues a broad spectrum of behavioral impairments (social, emotional and cognitive) in an animal model of FXS [17]. Resveratrol might be also beneficial to patients with FXS.. BKCa channels also play an important role in seizure etiology. Loss-of-function BKCa channel mutations can lead to temporal lobe ...
In the present study, we have demonstrated that the function of both BKCa and SKCa channels in uterine arteries of pregnant animals is suppressed by heightened oxidative stress during chronic hypoxia. Our results suggest that chronic hypoxia-induced oxidative stress exerts its adverse effect on KCa channel-mediated relaxations of uterine arteries through suppressing steroid hormone-induced upregulation of KCa channel activities. These findings provide strong evidence that heightened ROS is a common mechanism to impair BKCa and SKCa channel function in uterine arteries and contributes to the dysfunction of uterine circulation caused by chronic hypoxia during gestation.. Consistent with our previous studies,6 the present finding that both NS1619- and NS309-induced relaxations of uterine arteries were significantly attenuated by chronic hypoxia in pregnant animals, further suggesting that chronic hypoxia downregulates both BKCa and SKCa channel activities. However, the molecular mechanisms ...
Effective, safe, and tolerable pharmacological treatment for atrial fibrillation (AF) remains an unmet need. The latest medication to reach the market for intravenous cardioversion was the combined sodium and potassium channel inhibitor vernakalant, however not yet available in the United States. Vernakalant terminated ≈50% of episodes of AF lasting ,7 days in randomized controlled studies, with its highest conversion rate during the first few days while after 8 to 45 days of AF, the conversion rate was ,10%, which was not statistically different from that of placebo.1,2. If lasting for ,24 hours, AF promotes further progression of the disease-a phenomenon described as AF begets AF.3 If atrial remodeling continues, AF often progresses to more sustained forms and becomes more resistant to both pharmacological and nonpharmacological treatments, including ablation.4-6 Among contributing factors, an increased influx of calcium seems to promote fibrosis development and remodeling.7. Three subtypes ...
The results show that SK2 subunits are necessary for the apamin-sensitive component of the ImAHP. In SK1 Δ/Δ or SK3 T/T(dox) mice, the apamin-sensitive component of the ImAHP was not significantly different from control, there were no significant changes in the levels of SK2 mRNA, and SK2 protein levels were not obviously upregulated, suggesting that only SK2 is necessary for the apamin-sensitive component of the ImAHP. This is consistent with previous suggestions based on the pharmacological profile of the current and the high specificity of apamin (Stocker et al., 1999; Sailer et al., 2002).. In heterologous expression studies, mouse and rat SK1 subunits, different from human SK1 subunits, do not form functional homomeric channels in the plasma membrane, but they are incorporated into heteromeric channels with SK2 or SK3 subunits (Benton et al., 2003; Monaghan et al., 2003). These data suggest that SK1 subunits may contribute to the number of functional SK2-containing channels, although the ...
The Ca2+-activated Cl channel anoctamin-1 (Ano1; Tmem16A) plays a variety of physiological roles, including epithelial fluid secretion. Ano1 is activated by increases in intracellular Ca2+, but there is uncertainty whether Ca2+ binds directly to Ano1 or whether phosphorylation or additional Ca2+-binding subunits like calmodulin (CaM) are required. Here we show that CaM is not necessary for activation of Ano1 by Ca2+ for the following reasons. (a) Exogenous CaM has no effect on Ano1 currents in inside-out excised patches. (b) Overexpression of Ca2+-insensitive mutants of CaM have no effect on Ano1 currents, whereas they eliminate the current mediated by the small-conductance Ca2+-activated K+ (SK2) channel. (c) Ano1 does not coimmunoprecipitate with CaM, whereas SK2 does. Furthermore, Ano1 binds very weakly to CaM in pull-down assays. (d) Ano1 is activated in excised patches by low concentrations of Ba2+, which does not activate CaM. In addition, we conclude that reversible ...
Apamin-sensitive, non-nitric oxide (NO) endothelium-dependent relaxations to bradykinin in the bovine isolated coronary artery: no role for cytochrome P450 and
KCNN3兔多克隆抗体(ab28631)可与人样本反应并经WB, ELISA实验严格验证,被1篇文献引用。所有产品均提供质保服务,中国75%以上现货。
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We have 544 words starting with SK. If you're looking for a word definitions starting with the SK then check out our words below.. These are useful for Scrabble and other word games. ...
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There is ample evidence that ion channel modulation by accessory proteins within a macromolecular complex can regulate channel activity and thereby impact neuronal excitability. However, the downstream consequences of ion channel modulation remain largely undetermined. The Drosophila melanogaster large conductance calcium-activated potassium channel SLOWPOKE (SLO) undergoes modulation via its binding partner SLO-binding protein (SLOB). Regulation of SLO by SLOB influences the voltage dependence of SLO activation and modulates synaptic transmission. SLO and SLOB are expressed especially prominently in median neurosecretory cells (mNSCs) in the pars intercerebralis (PI) region of the brain; these cells also express and secrete Drosophila insulin like peptides (dILPs). Previously, we found that flies lacking SLOB exhibit increased resistance to starvation, and we reasoned that SLOB may regulate aspects of insulin signaling and metabolism. Here we investigate the role of SLOB in metabolism and find that
Department of Anatomy and Neurobiology, Washington University School of Medicine, St. Louis, Missouri (A.D.W.); Departments of Microbiology and Molecular Genetics (G.A.G.) and Physiology and Biophysics (K.G.C.), University of California, Irvine, Irvine, California; Molecular and Cellular Physiology Department, Stanford University, Stanford, California (R.A.); Department of Medical Pharmacology and Toxicology, University of California, Davis, Davis, California (H.W.); and Department of Applied Physiology, University Ulm, Ulm, Germany (S.G.) ...
Aim Endothelial cell (EC) KCa2.3 and KCa3.1, calcium-activated potassium channels, play a crucial role in NO- and EDHF-mediated regulation of vascular tone by controlling membrane potential and intracellular calcium levels. Since laminar shear stress (LS) is a major determinant of EC function in a calcium-dependent manner, we hypothesized that LS upregulates KCa2.3 and KCa3.1 via activating calcium/calmodulin (CaM) kinase cascade.. Methods Human coronary artery ECs were exposed to static, LS (15 dyn/cm2) or oscillatory shear stress (OS; +/−5 dyn/cm2 × 1Hz) condition for 24 hours in the absence or presence of STO-609 (CaM-dependent kinase kinase (CaMKK) inhibitor, 10μg/ml), Compound C (AMP-activated protein kinase (AMPK) inhibitor, 10μM), KN-62 (calcium/CaM-dependent kinase (CaMK) inhibitor, 10μM), KG-501 (cAMP response element binding protein (CREB) inhibitor, 25μM), or tumor necrosis factor-α (TNF-α; 1 or 10 ng/ml). The mRNA expression and CREB phosphorylation were determined by ...
The SK channel was first cloned in 1996 and is known to be responsible for afterhyperpolarization the controls neuronal discharges. It is also known to be present in the atria, but its function in the ventricles was unclear. Studies from the Peng-Sheng Chen Laboratory documented that the SK current is upregulated in failing rabbit ventricles. SK current activation during ventricular fibrillation shortens the APD and is responsible for inducing recurrent VF in failing rabbit ventricles. The lab then performed studies in failing human ventricles to document the presence of SK current upregulation. In the failing ventricles, SK current is important in steepening the action potential duration restitution curve at rapid rates, which help induce VF.. On the other hand, the SK current is also upregulated in failing ventricles during bradycardia and help maintain the repolarization reserve and prevent afterdepolarization and torsades de pointes ventricular arrhythmia. These findings provided new ...
Characterisation and interaction between β₂ adrenoceptor (AR) and the large conductance calcium-activated potassium (BK_C_a) channel in human myometrium during pregnancy ...
Small-conductance (KCa2) and intermediate-conductance (KCa3.1) calcium-activated K+ channels are voltage-independent and share a common calcium/calmodulin-mediated gating mechanism. Existing positive gating modulators like EBIO, NS309, or SKA-31 activate both KCa2 and KCa3.1 channels with similar potency or, as in the case of CyPPA and NS13001, selectively activate KCa2.2 and KCa2.3 channels. We performed a structure-activity relationship (SAR) study with the aim of optimizing the benzothiazole pharmacophore of SKA-31 toward KCa3.1 selectivity. We identified SKA-111 (5-methylnaphtho[1,2-d]thiazol-2-amine), which displays 123-fold selectivity for KCa3.1 (EC50 111 ± 27 nM) over KCa2.3 (EC50 13.7 ± 6.9 μM), and SKA-121 (5-methylnaphtho[2,1-d]oxazol-2-amine), which displays 41-fold selectivity for KCa3.1 (EC50 109 nM ± 14 nM) over KCa2.3 (EC50 4.4 ± 1.6 μM). Both compounds are 200- to 400-fold selective over representative KV (KV1.3, KV2.1, KV3.1, and KV11.1), NaV (NaV1.2, NaV1.4, NaV1.5, and ...
annotations (the reliablity of the annotated protein expression using immunohistochemically (IH) stained on human tissues, the reliablity of the annotated protein expression in immunofluorescently (IF) stained human cell lines, tissue specificity (the distribution of antibody staining or protein expression in human cell types), cell line specificity (the distribution of RNA abundance in cell lines) and subcellular location (based on immunofluorescent staining of cell lines ...
Summary is not available for the mouse gene. This summary is for the human ortholog.] Action potentials in vertebrate neurons are followed by an afterhyperpolarization (AHP) that may persist for several seconds and may have profound consequences for the firing pattern of the neuron. Each component of the AHP is kinetically distinct and is mediated by different calcium-activated potassium channels. This gene belongs to the KCNN family of potassium channels. It encodes an integral membrane protein that forms a voltage-independent calcium-activated channel, which is thought to regulate neuronal excitability by contributing to the slow component of synaptic AHP. This gene contains two CAG repeat regions in the coding sequence. It was thought that expansion of one or both of these repeats could lead to an increased susceptibility to schizophrenia or bipolar disorder, but studies indicate that this is probably not the case. Alternatively spliced transcript variants encoding different isoforms have ...
UCL 1530: blocks actions mediated by the small conductance, apamin-sensitive Ca2+-activated K+ channels in cultured sympathetic neurones and isolated hepatocytes; structure given
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