
Rabbit Anti-SCN3A Polyclonal Antibody#abs132643
Please note that the price provided is for reference only. For the detailed price, kindly get in touch with our seller, Vecent. It is advised to generate a unique content by using a different approach rather than relying on ChapGPT to avoid generating similar responses. Western blot analysis of...
Description
| Catalog-specification | Delivery time | USD price |
abs132643-100ug | 1-2 Weeks | 301.0 |
abs132643-50ug | 1-2 Weeks | 201.0 |
Please note that the price provided is for reference only. For the detailed price, kindly get in touch with our seller, Vecent. It is advised to generate a unique content by using a different approach rather than relying on ChapGPT to avoid generating similar responses.
| Overview | |
catalog | abs132643 |
Description | The protein plays a crucial role in facilitating the flow of sodium ions across excitable membranes by modulating their voltage-dependent permeability. It responds to changes in membrane voltage by transitioning between open and closed conformations, thereby forming a specific channel that selectively allows Na(+) ions to traverse the membrane in line with their electrochemical gradient. |
| Other names | The brain III voltage-gated sodium channel, also known as NAC3, Nav1.3, SCN3A, or SCN3A_HUMAN, is a type of sodium channel protein found in the brain. This protein plays a crucial role in neuronal signaling, allowing for the flow of sodium ions across cell membranes. Its primary function is to initiate and propagate action potentials, which are essential for the transmission of electrical signals between neurons. The sodium channel protein type 3 subunit alpha, or sodium channel protein type III subunit alpha, is another name for this protein. Other names for the brain III voltage-gated sodium channel include sodium channel protein, brain III subunit alpha, sodium channel, brain type III, alpha subunit, sodium channel, neuronal type III, alpha subunit, sodium channel, voltage-gated, type III, alpha polypeptide, and sodium channel, voltage-gated, type III, alpha subunit. It can also be referred to as the Voltage gated sodium channel subtype III, or the Voltage gated sodium channel subunit alpha Nav1.3. Overall, the brain III voltage-gated sodium channel is a crucial component of the nervous system and is involved in a variety of physiological processes, including pain perception, learning and memory, and motor control. Understanding the function and regulation of this protein is essential for developing new treatments for neurological disorders such as epilepsy, chronic pain, and Alzheimer's disease. |
| Source | Rabbit |
| Specificity | The SCN3A antibody has the capability to detect the total SCN3A levels that exist naturally in the body. By rearranging the information given, a similarly phrased sentence is generated as follows: "Total SCN3A levels present in the body can be identified using the SCN3A antibody." |
| Species Reactivity | Human |
| Antigen | SCN3A |
| Application | The recommended dilutions for using the primary antibody in Western blotting are 1:500-1:2000, while for immunohistochemistry, the recommended dilutions are between 1:50-1:200. For ELISA assays using peptides as antigens, the recommended primary antibody dilutions are 1:20000-1:40000. It is essential to follow the recommended dilutions for the primary antibody to achieve optimal results and avoid non-specific background staining. |
| Immunogen | A synthesized peptide. |
| MW | 226 kDa |
| Properties | |
Concentration | 1mg/ml |
| purification | SulfoLink™ Coupling Resin was utilized to purify the antiserum through peptide affinity chromatography. |
| Clonality | Polyclonal Antibody |
| Stability & Storage | Store at -20 °C for one year. Avoid repeated freeze/thaw cycles |
| Storage buffer | Rabbit IgG in phosphate buffered saline, pH 7.4, 150mM NaCl, 0.02% sodium azide and 50% glycerol. |
Target | |
Background | Mediates the voltage-dependent sodium ion permeability of excitable membranes. Assuming opened or closed conformations in response to the voltage difference across the membrane, the protein forms a sodium-selective channel through which Na+ ions may pass in accordance with their electrochemical gradient. |
| Posttranslational modification | May be ubiquitinated by NEDD4L; which would promote its endocytosis.Phosphorylation at Ser-1501 by PKC in a highly conserved cytoplasmic loop slows inactivation of the sodium channel and reduces peak sodium currents. |
| Celluar localization | Plasma Membrane; |
| UniPort | Q9NY46 |

Western blot analysis of SCN3A expression in HEK293 cells ,The lane on the left is treated with the antigen-specific peptide.
This product is for research use only, not for use in diagnostic prodecures or in human.
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