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            Clicking the images or links will redirect you to a website hosted by BenchSci that provides third-party scientific content. Neither the content nor the BenchSci technology and processes for selection have been evaluated by us; we are providing them as-is and without warranty of any kind, including for use or application of the Thermo Fisher Scientific products presented.

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            • Primary Antibodies ›
            • Sodium Channel Pan Antibodies

            Invitrogen

            Sodium Channel Pan Polyclonal Antibody

            View all (17) Sodium Channel Pan antibodies
            Datasheet
            Protocols
            Questions & Answers
            Datasheet
            Protocols
            Questions & Answers

            Cite Sodium Channel Pan Polyclonal Antibody

            Product Details

            PA5-51019

            Applications
            Tested Dilution
            Publications

            Western Blot (WB)

            1:500-1:2,000
            -

            Immunohistochemistry (IHC)

            1:100-1:300
            -

            Immunocytochemistry (ICC/IF)

            1:200-1:1,000
            -

            ELISA (ELISA)

            1:20,000
            -
            Product Specifications

            Species Reactivity

            Human, Mouse, Rat

            Host/Isotype

            Rabbit / IgG

            Class

            Polyclonal

            Type

            Antibody

            Immunogen

            Synthesized peptide derived from the Internal region of human Na+ CP-pan.

            Conjugate

            Unconjugated

            Form

            Liquid

            Concentration

            1 mg/mL

            Purification

            Antigen affinity chromatography

            Storage buffer

            PBS, pH 7.4, with 50% glycerol, 0.5% BSA

            Contains

            0.02% sodium azide

            Storage conditions

            -20°C, Avoid Freeze/Thaw Cycles

            Shipping conditions

            Ambient (domestic); Wet ice (international)

            RRID

            AB_2636467

            Product Specific Information

            SCN1A Polyclonal Antibody detects endogenous levels of SCN1A protein.

            Target Information

            Voltage-gated sodium channels (NaV) are essential for the generation of action potentials and for cell excitability. NaV channels are activated in response to depolarization and selectively allow flow of Na+ ions. To date, nine NaV alpha subunits have been cloned and named NaV1.1-NaV1.9. The NaV channels are classified into two groups according to their sensitivity to tetrodotoxin (TTX): TTX-sensitive (NaV1.1, NaV1.2, NaV1.3, NaV1.4, NaV1.6 and NaV1.7) and TTX-resistant (NaV1.5, NaV1.8 and NaV1.9). Mammalian sodium channels are heterotrimers, composed of a central, pore-forming alpha subunit and two auxiliary beta subunits. The expression of the alpha subunit isoform is developmentally regulated and tissue specific. Sodium channels in the adult central nervous system and heart contain beta 1 through beta 4 subunits, whereas sodium channels in adult skeletal muscle have only the beta 1 subunit.

            For Research Use Only. Not for use in diagnostic procedures. Not for resale without express authorization.

            References (0)

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            Cite this product

            Bioinformatics

            Protein Aliases: 3-Feb; alternative product; ataxia 3; brain III voltage-gated sodium channel; cardiac tetrodotoxin-insensitive voltage-dependent sodium channel alpha subunit; CTC-264K15.6; HBSC II; hH1; hNa6/Scn8a voltage-gated sodium channel; hNaN; hNE-Na; mH1; Mu-1; Na+ channel; NaCh6; NaN; Neuroendocrine sodium channel; Peripheral nerve protein type 4; Peripheral nerve sodium channel 3; Peripheral nerve sodium channel 5; Peripheral sodium channel 1; PN1; PN3; PN4; PN5; RIIA sodium channel protein; Sensory neuron sodium channel; Sensory neuron sodium channel 2; skeletal muscle sodium channel alpha subunit; skeletal muscle voltage-dependent sodium channel type IV alpha subunit; SkM1; sodium channel 25; Sodium channel 6; sodium channel alpha-subunit; Sodium channel protein brain I subunit alpha; Sodium channel protein brain II subunit alpha; Sodium channel protein brain III subunit alpha; Sodium channel protein cardiac muscle subunit alpha; Sodium channel protein skeletal muscle subunit alpha; Sodium channel protein type 1 subunit alpha; Sodium channel protein type 10 subunit alpha; Sodium channel protein type 11 subunit alpha; Sodium channel protein type 2 subunit alpha; Sodium channel protein type 3 subunit alpha; Sodium channel protein type 4 subunit alpha; Sodium channel protein type 5 subunit alpha; Sodium channel protein type 8 subunit alpha; Sodium channel protein type 9 subunit alpha; Sodium channel protein type I subunit alpha; Sodium channel protein type II subunit alpha; Sodium channel protein type III subunit alpha; Sodium channel protein type IV subunit alpha; Sodium channel protein type IX subunit alpha; Sodium channel protein type V subunit alpha; Sodium channel protein type VIII subunit alpha; Sodium channel protein type X subunit alpha; Sodium channel protein type XI subunit alpha; sodium channel protein, brain I alpha subunit; sodium channel protein, brain I subunit alpha; sodium channel protein, brain II subunit alpha; sodium channel protein, brain III subunit alpha; sodium channel protein, brain type 2 alpha subunit; sodium channel type X alpha polypeptide; sodium channel voltage gated type 1 alpha subunit; sodium channel voltage-gated type 11 alpha polypeptide; sodium channel voltage-gated type 4 alpha polypeptide; sodium channel voltage-gated type I alpha polypeptide; sodium channel voltage-gated type II alpha polypeptide; Sodium channel voltage-gated type IV alpha polypeptide; sodium channel voltage-gated type V alpha polypeptide; sodium channel voltage-gated type VIII alpha polypeptide; sodium channel voltage-gated type X alpha polypeptide; sodium channel voltage-gated type XI alpha polypeptide; sodium channel, voltage gated, type I alpha subunit; sodium channel, voltage gated, type II alpha subunit; sodium channel, voltage gated, type III alpha subunit; sodium channel, voltage gated, type IV alpha subunit; sodium channel, voltage gated, type IX alpha subunit; sodium channel, voltage gated, type V alpha subunit; sodium channel, voltage gated, type VIII alpha subunit; sodium channel, voltage gated, type VIII, alpha subunit; sodium channel, voltage gated, type X alpha subunit; sodium channel, voltage gated, type XI alpha subunit; sodium channel, voltage-gated, type 1, alpha polypeptide; sodium channel, voltage-gated, type 10, alpha polypeptide; sodium channel, voltage-gated, type 11, alpha polypeptide; sodium channel, voltage-gated, type 2, alpha 1 polypeptide; sodium channel, voltage-gated, type 2, alpha 1 subunit; sodium channel, voltage-gated, type 3, alpha subunit; sodium channel, voltage-gated, type 4, alpha polypeptide; sodium channel, voltage-gated, type 4, alpha subunit; sodium channel, voltage-gated, type 5, alpha subunit; sodium channel, voltage-gated, type 8, alpha polypeptide; sodium channel, voltage-gated, type 8, alpha subunit; sodium channel, voltage-gated, type 9, alpha polypeptide; sodium channel, voltage-gated, type I, alpha polypeptide; sodium channel, voltage-gated, type I, alpha subunit; sodium channel, voltage-gated, type II, alpha 1; sodium channel, voltage-gated, type II, alpha 1 polypeptide; sodium channel, voltage-gated, type II, alpha 2 polypeptide; sodium channel, voltage-gated, type II, alpha polypeptide 1; sodium channel, voltage-gated, type II, alpha subunit; sodium channel, voltage-gated, type III, alpha polypeptide; sodium channel, voltage-gated, type IV, alpha polypeptide; sodium channel, voltage-gated, type IV, alpha subunit; sodium channel, voltage-gated, type IX, alpha polypeptide; sodium channel, voltage-gated, type IX, alpha subunit; sodium channel, voltage-gated, type V, alpha polypeptide; sodium channel, voltage-gated, type V, alpha subunit; sodium channel, voltage-gated, type VIII, alpha polypeptide; sodium channel, voltage-gated, type X, alpha polypeptide; sodium channel, voltage-gated, type X, alpha subunit; sodium channel, voltage-gated, type XI, alpha polypeptide; sodium channel, voltage-gated, type XI, alpha subunit; sodium channel, voltage-gated, type XII, alpha polypeptide; sodium channel, voltage-gated, type11, alpha polypeptide; SP-19; voltage gated sodium channel; voltage-gated sodium channel alpha subunit Nav1.7; voltage-gated sodium channel Nav1.5c; voltage-gated sodium channel NAV1.9b; voltage-gated sodium channel subtype II; Voltage-gated sodium channel subtype III; Voltage-gated sodium channel subunit alpha Nav1.1; Voltage-gated sodium channel subunit alpha Nav1.2; Voltage-gated sodium channel subunit alpha Nav1.3; Voltage-gated sodium channel subunit alpha Nav1.4; Voltage-gated sodium channel subunit alpha Nav1.5; Voltage-gated sodium channel subunit alpha Nav1.6; Voltage-gated sodium channel subunit alpha Nav1.7; Voltage-gated sodium channel subunit alpha Nav1.8; Voltage-gated sodium channel subunit alpha Nav1.9; voltage-gated sodium channel type II alpha subunit; voltage-gated sodium channel type VIII alpha protein

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            Gene Aliases: 6430408L10; A230052E19Rik; AI853486; B230332M13; BFIC3; BFIS3; BFNIS; C630029C19Rik; CDCD2; CERIII; CIAT; CMD1E; CMPD2; CMS16; dmu; EIEE11; EIEE13; EIEE6; ETHA; FEB3; FEB3A; FEB3B; FEPS2; FEPS3; FHM3; GEFSP2; GEFSP7; Gm1000; HB1; HB2; HBA; HBBD; HBSCI; HBSCII; HH1; HOKPP2; hPN3; HSAN2D; HSAN7; HYKPP; HYPP; ICCD; IVF; KIAA1356; Kiaa4197; LQT3; MED; mH1; mH2; microI; mKIAA4197; mnd-2; mnd2; Na(v)1.2; Na(V)1.4; Na(V)1.8; NAC1; NAC1A; NAC2; NAC3; NaCh6; NachII; NaN; NaT; Nav1.1; Nav1.2; Nav1.3; Nav1.4; Nav1.5; Nav1.5c; Nav1.6; Nav1.7; Nav1.8; NAV1.9; Nbna1; NCHVS; NE-NA; NENA; nmf2; nmf335; nmf58; NSS2; nur14; PFHB1; PN1; PN3; PN4; PN5; RII/RIIA; RNSCPIIR; SCAL; SCIII; SCN; SCN1; SCN10A; SCN11A; SCN12A; SCN1A; SCN2A; SCN2A1; SCN2A2; SCN3A; SCN4A; SCN5A; SCN8A; SCN9A; ScpII; seal; SFNP; SkM1; SkM2; SMEI; SNS; SNS-2; SNS2; SSS1; VF1

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            UniProt ID: (Human) Q9Y5Y9, (Human) Q9UI33, (Human) P35498, (Human) Q99250, (Human) Q9NY46, (Human) P35499, (Human) E9PEK2, (Human) Q9UQD0, (Human) Q15858, (Rat) Q62968, (Mouse) Q6QIY3, (Rat) O88457, (Mouse) Q9R053, (Rat) P04774, (Mouse) A2APX8, (Rat) P04775, (Mouse) B1AWN6, (Mouse) A2ASI5, (Rat) P08104, (Mouse) Q9ER60, (Rat) P15390, (Rat) P15389, (Mouse) Q9JJV9, (Mouse) Q9WTU3, (Rat) O88420, (Mouse) Q62205, (Rat) O08562

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            Entrez Gene ID: (Human) 6336, (Human) 11280, (Human) 6323, (Human) 6326, (Human) 6328, (Human) 6329, (Human) 6331, (Human) 6334, (Human) 6335, (Rat) 29571, (Mouse) 20264, (Rat) 29701, (Mouse) 24046, (Rat) 81574, (Mouse) 20265, (Rat) 24766, (Mouse) 110876, (Mouse) 20269, (Rat) 497770, (Mouse) 110880, (Rat) 25722, (Rat) 25665, (Mouse) 20271, (Mouse) 20273, (Rat) 29710, (Mouse) 20274, (Rat) 78956

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            Function(s)

            voltage-gated sodium channel activity ion channel binding sodium ion binding calmodulin binding protein binding fibroblast growth factor binding enzyme binding protein kinase binding protein domain specific binding ankyrin binding ubiquitin protein ligase binding nitric-oxide synthase binding voltage-gated sodium channel activity involved in cardiac muscle cell action potential voltage-gated sodium channel activity involved in AV node cell action potential voltage-gated sodium channel activity involved in bundle of His cell action potential voltage-gated sodium channel activity involved in Purkinje myocyte action potential voltage-gated sodium channel activity involved in SA node cell action potential scaffold protein binding ATP binding ion channel activity voltage-gated ion channel activity sodium channel activity leucine zipper domain binding nucleotide binding voltage-gated ion channel

            Process(es)

            regulation of heart rate sensory perception neuronal action potential sensory perception of pain regulation of ion transmembrane transport sodium ion transmembrane transport odontogenesis of dentin-containing tooth regulation of cardiac muscle contraction regulation of postsynaptic membrane potential regulation of atrial cardiac muscle cell membrane depolarization membrane depolarization during action potential AV node cell action potential bundle of His cell action potential sodium ion transport response to drug regulation of sensory perception of pain positive regulation of defense response to virus by host adult walking behavior neuronal action potential propagation neuromuscular process controlling posture xenophagy intrinsic apoptotic signaling pathway in response to osmotic stress myelination neuron apoptotic process nervous system development response to wounding response to pyrethroid cellular response to antibiotic potassium ion transport muscle contraction choline transport cardiac ventricle development brainstem development positive regulation of sodium ion transport response to denervation involved in regulation of muscle adaptation telencephalon development cerebellum development positive regulation of action potential positive regulation of epithelial cell proliferation membrane depolarization cardiac muscle contraction regulation of ventricular cardiac muscle cell membrane repolarization regulation of atrial cardiac muscle cell membrane repolarization regulation of ventricular cardiac muscle cell membrane depolarization cardiac conduction cellular response to calcium ion cardiac muscle cell action potential involved in contraction regulation of cardiac muscle cell contraction ventricular cardiac muscle cell action potential membrane depolarization during cardiac muscle cell action potential SA node cell action potential membrane depolarization during AV node cell action potential membrane depolarization during SA node cell action potential membrane depolarization during Purkinje myocyte cell action potential membrane depolarization during bundle of His cell action potential AV node cell to bundle of His cell communication regulation of heart rate by cardiac conduction regulation of sodium ion transmembrane transport peripheral nervous system development inflammatory response response to toxic substance post-embryonic development behavioral response to pain bundle of His cell to Purkinje myocyte communication transport ion transport transmembrane transport action potential regulation of membrane potential cation transport positive regulation of heart rate response to organic cyclic compound SA node cell to atrial cardiac muscle cell communication muscle organ development sensory perception of sound locomotory behavior adult locomotory behavior neuromuscular process rhythmic excitation
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