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Cav3.2 Antibody (APC)

CAT: 0013-GTR18028639Size: 100 µgDry Ice: NoHazardous: No
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CAT#:0013-GTR18028639Size:100 µg
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Description
Mouse monoclonal to CaV3 (APC) . 2. Ion channels are integral membrane proteins that help establish and control the small voltage gradient across the plasma membrane of living cells by allowing the flow of ions down their electrochemical gradient. They are present in the membranes that surround all biological cells because their main function is to regulate the flow of ions across this membrane. Whereas some ion channels permit the passage of ions based on charge, others conduct based on a ionic species, such as sodium or potassium. Furthermore, in some ion channels, the passage is governed by a gate which is controlled by chemical or electrical signals, temperature, or mechanical forces. There are a few main classifications of gated ion channels. There are voltage- gated ion channels, ligand-gated, other gating systems and finally those that are classified differently, having more exotic characteristics. The first are voltage- gated ion channels which open and close in response to membrane potential. These are then separated into sodium, calcium, potassium, proton, transient receptor, and cyclic nucleotide-gated channels; each of which is responsible for a unique role. Ligand-gated ion channels are also known as ionotropic receptors, and they open in response to specific ligand molecules binding to the extracellular domain of the receptor protein. The other gated classifications include activation and inactivation by second messengers, inward-rectifier potassium channels, calcium-activated potassium channels, two-pore-domain potassium channels, light-gated channels, mechano-sensitive ion channels and cyclic nucleotide-gated channels. Finally, the other classifications are based on less normal characteristics such as two-pore channels, and transient receptor potential channels. Specifically, CaV3. 2 is a protein which in humans is encoded by the CACNA1H gene. Studies suggest certain mutations in this gene lead to childhood absence epilepsy. Studies also suggest that the up-regulations of CaV3. 2 may participate in the progression of prostate cancer toward an androgen-independent stage. ...
Product Name Alternative
Voltage-dependent T-type calcium channel subunit alpha-1H, Voltage-gated calcium channel subunit alpha Cav3.2, CACNA1H, KIAA1120, Cav3.2, CACNA1HB, calcium channel, voltage-dependent, T type, alpha 1H subunit, alpha 1Hb subunit, ECA6, EIG6, FLJ90484, 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
UniProt
O95180
Reactivity
Human, Mouse, Rat
Immunogen
Fusion protein amino acids 1019-1293 (II-III loop) of human Cav3.2
Target
Cav3.2
Clonality
Monoclonal
Clone
N55/10 (Formerly sold as S55-10)
Conjugation
APC
Field of Research
Cancer Biology, Neuroscience, Pharmacology & Drug Discovery, Signal Transduction
Purification
Protein G Purified
Concentration
1 mg/ml
Dilution
WB (1:1000), IHC (1:1000), ICC/IF (1:100)
Molecular Weight
260kDa
Storage Conditions
Conjugated antibodies should be stored according to the product label
Notes
For research use only.
Applications Notes
1 μg/ml was sufficient for detection of Cav3.2 in 10 μg of HEK cell lysate expressing Cav3.2 by colorimetric immunoblot analysis using Goat anti-mouse IgG:HRP as the secondary antibody.
Tested Applications
AM, ICC, IF, IHC, IP, WB
NCBI Accession Number
NP_001005407.1
Host or Source
Mouse
Preservative
95.46mM Phosphate, 2.48mM MES and 2mM EDTA
Isotype
IgG1
Entrez
8912