CACNA1G Rabbit pAb
CACNA1G Rabbit pAb
- 产品详情
- 实验流程
- 背景知识
Application
| IHC-P, IHC-F, IF |
|---|---|
| Primary Accession | O43497 |
| Reactivity | Rat, Human, Mouse |
| Predicted | Dog |
| Host | Rabbit |
| Clonality | Polyclonal |
| Calculated MW | 262472 Da |
| Physical State | Liquid |
| Immunogen | KLH conjugated synthetic peptide derived from human CACNA1G/Cav31 |
| Epitope Specificity | 901-1000/2377 |
| Isotype | IgG |
| Purity | affinity purified by Protein A |
| Buffer | 0.01M TBS (pH7.4) with 1% BSA, 0.02% Proclin300 and 50% Glycerol. |
| SUBCELLULAR LOCATION | Membrane; Multi-pass membrane protein. |
| Important Note | This product as supplied is intended for research use only, not for use in human, therapeutic or diagnostic applications. |
| Background Descriptions | Voltage-sensitive calcium channels mediate the entry of calcium ions into excitable cells, and are also involved in a variety of calcium-dependent processes, including muscle contraction, hormone or neurotransmitter release, gene expression, cell motility, cell division, and cell death. This gene encodes a T-type, low-voltage activated calcium channel. The T-type channels generate currents that are both transient, owing to fast inactivation, and tiny, owing to small conductance. T-type channels are thought to be involved in pacemaker activity, low-threshold calcium spikes, neuronal oscillations and resonance, and rebound burst firing. Many alternatively spliced transcript variants encoding different isoforms have been described for this gene. [provided by RefSeq, Sep 2011] |
| Gene ID | 8913 |
|---|---|
| Other Names | Voltage-dependent T-type calcium channel subunit alpha-1G, Cav3.1c, NBR13, Voltage-gated calcium channel subunit alpha Cav3.1, CACNA1G, KIAA1123 |
| Dilution | IHC-P=1:100-500,IHC-F=1:100-500,IF=1:100-500 |
| Storage | Store at -20 °C for one year. Avoid repeated freeze/thaw cycles. When reconstituted in sterile pH 7.4 0.01M PBS or diluent of antibody the antibody is stable for at least two weeks at 2-4 °C. |
For Research Use Only. Not For Use In Diagnostic Procedures.
| Name | CACNA1G |
|---|---|
| Synonyms | KIAA1123 |
| Function | Voltage-sensitive calcium channels (VSCC) mediate the entry of calcium ions into excitable cells and are also involved in a variety of calcium-dependent processes, including muscle contraction, hormone or neurotransmitter release, gene expression, cell motility, cell division and cell death. The isoform alpha-1G gives rise to T-type calcium currents. T-type calcium channels belong to the 'low-voltage activated (LVA)' group and are strongly blocked by mibefradil. A particularity of this type of channel is an opening at quite negative potentials and a voltage-dependent inactivation. T-type channels serve pacemaking functions in both central neurons and cardiac nodal cells and support calcium signaling in secretory cells and vascular smooth muscle. They may also be involved in the modulation of firing patterns of neurons which is important for information processing as well as in cell growth processes. |
| Cellular Location | Cell membrane; Multi-pass membrane protein. Cytoplasm |
| Tissue Location | Highly expressed in brain, in particular in the amygdala, subthalamic nuclei, cerebellum and thalamus. Moderate expression in heart; low expression in placenta, kidney and lung. Also expressed in colon and bone marrow and in tumoral cells to a lesser extent. Highly expressed in fetal brain, but also in peripheral fetal tissues as heart, kidney and lung, suggesting a developmentally regulated expression |
Research Areas
Application Protocols
Provided below are standard protocols that you may find useful for product applications.
BACKGROUND
This product as supplied is intended for research use only, not for use in human, therapeutic or diagnostic applications.
REFERENCES
Toyota M.,et al.Cancer Res. 59:4535-4541(1999).
Mittman S.,et al.Neurosci. Lett. 274:143-146(1999).
Cribbs L.L.,et al.FEBS Lett. 466:54-58(2000).
Monteil A.,et al.J. Biol. Chem. 275:6090-6100(2000).
Emerick M.C.,et al.Proteins 64:320-342(2006).
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