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Calcium Channel, Voltage-Dependent, T Type, alpha 1H Subunit (CACNA1H) ELISA Kits

CACNA1H encodes a T-type member of the alpha-1 subunit family, a protein in the voltage-dependent calcium channel complex. Additionally we are shipping CACNA1H Antibodies (61) and CACNA1H Proteins (8) and many more products for this protein.

list all ELISA KIts Gene Name GeneID UniProt
Anti-Human CACNA1H CACNA1H 8912 O95180
CACNA1H 58226  
Anti-Rat CACNA1H CACNA1H 114862 Q9EQ60
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Catalog No. Reactivity Sensitivity Range Images Quantity Supplier Delivery Price Details
Mouse 0.117 ng/mL 0.31-20 ng/mL 96 Tests Log in to see 9 to 11 Days

More ELISA Kits for CACNA1H Interaction Partners

Human Calcium Channel, Voltage-Dependent, T Type, alpha 1H Subunit (CACNA1H) interaction partners

  1. CACNA1H might be a susceptibility gene predisposing to PA with different phenotypic presentations, opening new perspectives for genetic diagnosis and management of patients with PA.

  2. heterozygous mutations identified in a pediatric patient with chronic pain and absence seizures result in loss of channel function, with significantly smaller current densities across a wide range of voltages when co-expressed in tsA (show PRDX2 ELISA Kits)-201 cells.

  3. CaV3.1 (show CACNA1G ELISA Kits), CaV3.2 and CaV3.3 (show CACNA1I ELISA Kits) channels, are best recognized for their negative voltage of activation and inactivation thresholds that allow them to operate near the resting membrane potential of neurons.

  4. Study revealed no association between the 15 tagSNPs of CACNA1A (show CACNA1A ELISA Kits), 1C, and 1H and antiepileptic drug efficacy in the Chinese Han epileptic population; the TAGAA haplotype of CACNA1A (show CACNA1A ELISA Kits) may be a risk factor for drug resistance

  5. Cav3.2 channels are highly phosphorylated in the mammalian brain and establish phosphorylation as an important mechanism involved in the dynamic regulation of Cav3.2 channel gating properties

  6. Recurrent gain of function mutation in calcium channel CACNA1H causes early-onset hypertension with primary aldosteronism.

  7. reveal an unexpected role of CaV3.2 channels in regulating NMDA-R-mediated transmission and a novel epileptogenic mechanism for human childhood absence epilepsy

  8. The I-II loop of the Cav3.2 protein inhibits neuronal Cav3.1 (show CACNA1G ELISA Kits) and Cav3.2 channels.

  9. N-linked glycosylation of Cav3.2 not only controls surface expression.

  10. Data indicate that endogenous/exogenous hydrogen sulfide regulates function of T-type Ca(2 (show CA2 ELISA Kits)+) channel Cav3.2 expressed in HEK293 cells

Mouse (Murine) Calcium Channel, Voltage-Dependent, T Type, alpha 1H Subunit (CACNA1H) interaction partners

  1. findings suggest that chronic intermittent hypoxia leads to an augmented calcium influx via reactive oxygen species -dependent facilitation of CaV3.2 protein trafficking to the plasma membrane.

  2. these data show that CaV3.2 T-type channels have prev8iously unrecognized roles in supporting the meiotic-maturation-associated increase in ER Ca(2 (show CA2 ELISA Kits)+) stores and mediating Ca(2 (show CA2 ELISA Kits)+) influx required for the activation of development.

  3. MTF1 (show MTF1 ELISA Kits) mediates the increase of CaV3.2 mRNA and a rise in intracellular Zn(2+) which is associated with status epilepticus.

  4. both suramin and gossypetin produced dose-dependent and long-lasting mechanical anti-hyperalgesia that was abolished or greatly attenuated in Cav3.2 null mice

  5. Data show increased expression of T-type Ca(2 (show CA2 ELISA Kits)+) current and association of protein kinase C alpha (PKCalpha (show PKCa ELISA Kits)) with caveolin-3 (Cav-3 (show CAV3 ELISA Kits))was disrupted in the hypertrophic ventricular myocyte.

  6. the asymmetric effects of the Cav3.2 and its partial reversal by behavior training on the hippocampal transcriptome

  7. This study demonstrated that CaV3.2 KO mice have altered retinal waves but normal direction selectivity.

  8. Suggest a negative feedback mechanism of the myogenic response in which CaV3.2 channel modulates downstream ryanodine receptor (show RYR3 ELISA Kits)-BKCa (show KCNMA1 ELISA Kits) to hyperpolarize and relax arteries.

  9. our results indicate that inhibition of Cav3 (show CAV3 ELISA Kits) currents by 5,6-epoxyeicosatrienoic acid is an important mechanism controlling the vascular tone.

  10. NMP-7 inhibits chronic inflammatory and neuropathic pain via block of Cav3.2 T-type calcium channels and activation of CB2 (show CNR2 ELISA Kits) receptors

CACNA1H Antigen Profile

Antigen Summary

This gene encodes a T-type member of the alpha-1 subunit family, a protein in the voltage-dependent calcium channel complex. Calcium channels mediate the influx of calcium ions into the cell upon membrane polarization and consist of a complex of alpha-1, alpha-2/delta, beta, and gamma subunits in a 1:1:1:1 ratio. The alpha-1 subunit has 24 transmembrane segments and forms the pore through which ions pass into the cell. There are multiple isoforms of each of the proteins in the complex, either encoded by different genes or the result of alternative splicing of transcripts. Alternate transcriptional splice variants, encoding different isoforms, have been characterized for the gene described here. Studies suggest certain mutations in this gene lead to childhood absence epilepsy (CAE).

Gene names and symbols associated with CACNA1H

  • calcium channel, voltage-dependent, T type, alpha 1H subunit (CACNA1H) antibody
  • calcium channel, voltage-dependent, T type, alpha 1H subunit (Cacna1h) antibody
  • alpha13.2 antibody
  • CACNA1HB antibody
  • Cav3.2 antibody
  • ECA6 antibody
  • EIG6 antibody
  • MNCb-1209 antibody

Protein level used designations for CACNA1H

calcium channel, voltage-dependent, T type, alpha 1Hb subunit , low-voltage-activated calcium channel alpha1 3.2 subunit , low-voltage-activated calcium channel alpha13.2 subunit , voltage dependent t-type calcium channel alpha-1H subunit , voltage-dependent T-type calcium channel subunit alpha-1H , voltage-gated calcium channel alpha subunit Cav3.2 , voltage-gated calcium channel alpha subunit CavT.2 , voltage-gated calcium channel subunit alpha Cav3.2 , T-type Cav3.2 , calcium channel alpha13.2 subunit

8912 Homo sapiens
58226 Mus musculus
114862 Rattus norvegicus
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