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          • Primary Antibodies ›
          • SCN5A Antibodies

          Proteintech

          SCN5A Monoclonal Antibody (1C2B3), CoraLite® Plus 488

          View all (9) SCN5A antibodies

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          Cite SCN5A Monoclonal Antibody (1C2B3), CoraLite® Plus 488

          Additional Information:
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          • Antibody Testing Data (1)
          SCN5A Antibody in Flow Cytometry (Flow)
          Group 53 Created with Sketch.
          SCN5A Antibody in Flow Cytometry (Flow)
          Group 53 Created with Sketch.

          FIGURE: 1 / 1

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          SCN5A Antibody (CL488-68273) in Flow

          1x10^6 HeLa cells were intracellularly stained with 0.4 µg CoraLite® Plus 488 Anti-Human SCN5A (CL488-68273, Clone: 1C2B3) (red), or 0.4 µg CoraLite® Plus 488 Mouse IgG1 Isotype Control (MOPC-21) (CL488-65124, Clone: MOPC-21) (blue). Cells were fixed with 4% PFA and permeabilized with Flow Cytometry Perm Buffer (PF00011-C). {{ $ctrl.currentElement.advancedVerification.fullName }} validation info. View more
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          SCN5A Antibody in Flow Cytometry (Flow)

          Product Details

          CL488-68273

          Applications
          Tested Dilution
          Publications

          Flow Cytometry (Flow)

          0.40 µg/10^6 cells in a 100 µL suspension
          -
          Product Specifications

          Species Reactivity

          Human, Rabbit, Rat

          Host/Isotype

          Mouse / IgG1

          Class

          Monoclonal

          Type

          Antibody

          Clone

          1C2B3

          Immunogen

          SCN5A fusion protein Ag19275

          Conjugate

          CoraLite® Plus 488 CoraLite® Plus 488 CoraLite® Plus 488
          • Unconjugated
          • Request custom conjugation

          Excitation/Emission Max

          493/522 nm

          Form

          Liquid

          Concentration

          1 mg/mL

          Amount

          100 µg

          Purification

          Protein G

          Storage buffer

          PBS, pH 7.3, with 0.5% BSA, 50% glycerol

          Contains

          0.05% ProClin 300

          Storage conditions

          -20°C, store in dark

          Shipping conditions

          Wet ice

          Product Specific Information

          Immunogen sequence: ATIAETEEK EKRFQEAMEM LKKEHEALTI RGVDTVSRSS LEMSPLAPVN SHERRSKRRK RMSSGTEECG EDRLPKSDSE DGPRAMNHLS LTRGLSRTSM KPRSSRGSIF TFRRRDLGSE ADFADDENST AGESESHRTS LLVPWPLRRT SAQGQPSPGT SAPGHALHGK KNSTVDCNGV VSLLGAGDPE ATSPGSHLLR PVMLEHPPDT TTPSEEPGGP QMLTSQAPCV DGFEEPGARQ RALSAVSVLT SALEELEESR HKCPPCWNRL AQRYLIWECC PLWMSIKQGV KLVV

          Target Information

          Scn5a is an integral membrane protein and tetrodotoxin-resistant voltage-gated sodium channel subunit. Scn5a is found primarily in cardiac muscle and is responsible for the initial upstroke of the action potential in an electrocardiogram. Defects in Scn5a are a cause of long QT syndrome type 3 (LQT3), an autosomal dominant cardiac disease. Alternative splicing results in several transcript variants encoding different isoforms of Scn5a. Voltage-gated sodium channesl (VGSCs) mediate regenerative cell membrane depolarization and conduction of electrical signalling in nerves and muscles. Expression of Scn5a is also detected in lymphocytes, glia, and fibroblasts. Further, Scn5a mediates the voltage-dependent sodium ion permeability of excitable membranes. Assuming opened or closed conformations in response to the voltage difference across the membrane, Scn5a forms a sodium-selective channel through which Na(+) ions may pass in accordance with their electrochemical gradient. Functionally, Scn5a is responsible for the initial upstroke of the action potential and the channel inactivation is regulated by intracellular calcium levels. Voltage-gated sodium channels (NaV) are responsible for action potential initiation and propagation in excitable cells, including nerve, muscle, and neuroendocrine cell types. Scn5a are also expressed at low levels in non-excitable cells, where their physiological role is unclear. Diseases associated with SCN5A include Long Qt Syndrome-3 and Brugada Syndrome 1.

          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: cardiac tetrodotoxin-insensitive voltage-dependent sodium channel alpha subunit; CDCD2VF1; CIN5; H1B; hH1; hH1c; voltage-gated sodium channel; HH1CMD1E; LQT3SSS1CMPD2; Nav1.5/SCN5A.3; RATRSKM2X; RH1; RSkM2; RSKM2X; Scn2x; scn5a-JEJ, HH1, hNav1.5, LQT3; Sodium channel protein cardiac muscle subunit alpha; Sodium channel protein type 5 subunit alpha; Sodium channel protein type V subunit alpha; sodium channel, voltage-gated, type 5, alpha subunit; sodium channel, voltage-gated, type V, alpha polypeptide; sodium channel, voltage-gated, type V, alpha subunit; voltage-gated sodium channel Nav1.5c; Voltage-gated sodium channel subunit alpha Nav1.5; voltage-gated sodium channel type V alpha polypeptide

          View more View less

          Gene Aliases: CDCD2; CMD1E; CMPD2; HB1; HB2; HBBD; HH1; ICCD; IVF; LQT3; Nav1.5; PFHB1; SCAL; SCN5A; SSS1; VF1

          View more View less

          UniProt ID: (Human) Q14524, (Rat) P15389

          View more View less

          Entrez Gene ID: (Human) 6331, (Rabbit) 100009516, (Rat) 25665

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          Function(s)
          ion channel activity voltage-gated sodium channel activity cation channel activity sodium channel activity protein binding calmodulin binding fibroblast growth factor binding enzyme binding protein kinase binding protein domain specific binding ankyrin binding ubiquitin protein ligase binding ion channel 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 voltage-gated ion channel
          Process(es)
          regulation of heart rate cardiac conduction system development cardiac ventricle development brainstem development ion transport sodium ion transport positive regulation of sodium ion transport response to denervation involved in regulation of muscle adaptation telencephalon development cerebellum development ion transmembrane transport sodium ion transmembrane transport odontogenesis of dentin-containing tooth positive regulation of action potential positive regulation of epithelial cell proliferation membrane depolarization transmembrane transport regulation of cardiac muscle contraction cardiac muscle contraction regulation of ventricular cardiac muscle cell membrane repolarization regulation of atrial cardiac muscle cell membrane depolarization regulation of atrial cardiac muscle cell membrane repolarization regulation of ventricular cardiac muscle cell membrane depolarization 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 action potential membrane depolarization during cardiac muscle cell action potential atrial cardiac muscle cell action potential SA node cell action potential AV node cell action potential bundle of His 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 membrane depolarization during atrial cardiac muscle cell action potential regulation of sodium ion transmembrane transport positive regulation of heart rate response to organic cyclic compound neuronal action potential regulation of ion transmembrane transport bundle of His cell to Purkinje myocyte communication SA node cell to atrial cardiac muscle cell communication
          It has to be done as per old AB suggested Products section.

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