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Product information "Anti-SCN1A/2A/3A/4A/5A/8A/9A/10A/11A/12A"
Voltage-gated sodium channels are membrane protein complexes that play a fundamental role in the rising phase of the action potential in most excitable cells. Alpha subunits, such as SCN11A, mediate voltage-dependent gating and conductance, while auxiliary beta subunits regulate the kinetic properties of the channel and facilitate membrane localization of the complex. Aberrant expression patterns or mutations of alpha subunits underlie a number of disorders. Each alpha subunit consists of 4 domains connected by 3 intracellular loops, each domain consists of 6 transmembrane segments and intra- and extracellular linkers. Protein function: 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. Plays a key role in brain, probably by regulating the moment when neurotransmitters are released in neurons. Involved in sensory perception of mechanical pain: activation in somatosensory neurons induces pain without neurogenic inflammation and produces hypersensitivity to mechanical, but not thermal stimuli. [The UniProt Consortium]
Keywords:
Anti-NAC1, Anti-SCN1A, Anti-Sodium channel protein type I subunit alpha, Anti-Sodium channel protein type 1 subunit alpha, Anti-Sodium channel protein brain I subunit alpha, Anti-Voltage-gated sodium channel subunit alpha Nav1.1, SCN1A/2A/3A/4A/5A/8A/9A/1
This website uses cookies, which are necessary for the technical operation of the website and are always set. Other cookies, which increase the usability of this website, serve for direct advertising or simplify interaction with other websites and social networks, will only be used with your consent.
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