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Antibodies

Cav3.1 Antibody, Clone N178A/9: RPE

Product Sizes
100 ug
£506.00
SMC-405D-RPE-100UG
About this Product
SKU:
SMC-405D-RPE
Additional Names:
Voltage-dependent T-type calcium channel subunit alpha-1G, Cav3.1, CACNA1G, CAC1G_HUMAN, KIAA1123, CaV T1, Cav3 1, cav3 1c, MGC117234, NBR13, voltage gated calcium channel cav3.1, calcium channel voltage dependent alpha 1G subunit, calcium channel voltage dependent T type alpha 1G subunit, calcium channel voltage dependent T type alpha1G subunit, voltage dependent calcium channel alpha 1G subunit isoform 11, voltage dependent T type calcium channel subunit alpha 1G, Voltage gated calcium channel subunit alpha Cav3 1
Application:
Immunocytochemistry, Immunofluorescence, Immunohistochemistry, Western Blot
Buffer:
95.46mM Phosphate, 2.48mM MES and 2mM EDTA
CE/IVD:
RUO
translate.label.attr.clone:
N178A/9 (Formerly sold as S178A-9)
Clonality:
Monoclonal
Conjugate:
R-PE
Concentration:
1 mg/ml
Extra Details:
Cav3.1, encoded by the CACNA1G gene, is a low-voltage-activated T-type calcium channel that plays a pivotal role in regulating neuronal excitability and rhythmic firing. Widely expressed across tissues, Cav3.1 is particularly important in the central nervous system, where it contributes to burst firing and oscillatory activity in thalamic and cortical neurons. In the heart, it may also participate in pacemaker currents, highlighting its physiological versatility. In the brain, Cav3.1 channels are considered secondary pacemakers, modulating sleep-wake cycles, sensory processing, and synaptic integration. Dysregulation of Cav3.1 activity has been implicated in a range of neurological and neurodegenerative disorders, including epilepsy, Parkinson's disease, and essential tremor. Altered T-type calcium channel function may also contribute to cognitive decline and neuroinflammation, positioning Cav3.1 as a potential therapeutic target in age-related neurodegeneration. Pharmacological blockers of T-type calcium channels, including Cav3.1, are already used clinically as antihypertensives and antiepileptics. Emerging evidence suggests these channels may also mediate the effects of certain anesthetics and antipsychotics, further underscoring their relevance in neuropharmacology. Despite their clinical significance, many aspects of Cav3.1's cellular localization, in vivo function, and disease-specific roles remain underexplored. Advancing our understanding of Cav3.1 could unlock new strategies for modulating calcium signaling in neurodegenerative disease.
Host:
Mouse
Immunogen:
Fusion protein amino acids 2052-2172 (cytoplasmic C-terminus) of mouse Cav3.1
Isotype:
IgG1
Purification:
Protein G Purified
Reactivities:
Human, Mouse, Rat
Shipping Conditions:
Blue Ice
Specificity:
Detects ~<200kDa. Does not cross-react with Cav3.2.
Storage Conditions:
See Manual
Supplier:
StressMarq Biosciences
Type:
Antibody: Monoclonal Antibody