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          • Primary Antibodies ›
          • RyR2 Antibodies

          Proteintech

          RYR2 Polyclonal Antibody, CoraLite® Plus 647

          View all (12) RyR2 antibodies

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          Cite RYR2 Polyclonal Antibody, CoraLite® Plus 647

          • Antibody Testing Data (2)
          RYR2 Antibody in Immunohistochemistry (Paraffin) (IHC (P))
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          RYR2 Antibody in Immunohistochemistry (Paraffin) (IHC (P))
          Group 53 Created with Sketch.

          FIGURE: 1 / 2

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          RYR2 Antibody (CL64727587100UL) in IHC (P)

          Immunofluorescent analysis of (4% PFA) fixed Mouse heart tissue using CoraLite 647 RYR2 antibody (Product # CL64727587100UL)) at dilution of 1:200. {{ $ctrl.currentElement.advancedVerification.fullName }} validation info. View more
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          RYR2 Antibody in Immunohistochemistry (Paraffin) (IHC (P))
          RYR2 Antibody in Immunohistochemistry (Paraffin) (IHC (P))

          Product Details

          CL64727587100UL

          Applications
          Tested Dilution
          Publications

          Immunohistochemistry (Paraffin) (IHC (P))

          1:200
          -

          Immunocytochemistry (ICC/IF)

          1:50-1:500
          -
          Product Specifications

          Species Reactivity

          Human

          Host/Isotype

          Rabbit / IgG

          Class

          Polyclonal

          Type

          Antibody

          Conjugate

          CoraLite® Plus 647 CoraLite® Plus 647 CoraLite® Plus 647

          Excitation/Emission Max

          654/674 nm

          Form

          Liquid

          Concentration

          1 mg/mL

          Purification

          Antigen affinity chromatography

          Storage buffer

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

          Contains

          0.05% ProClin 300

          Storage conditions

          -20°C, Avoid Freeze/Thaw Cycles, store in dark

          Shipping conditions

          Wet ice

          Target Information

          Dihydropyridine receptor (DHPR) is a surface membrane protein critical for the excitation-contraction coupling of striated muscle. DHPR and the sarcoplasmic reticulum ryanodine receptor (RyR) are two key components of the intracellular junctions, where depolarization of the surface membrane is converted into the release of Ca2+ from internal stores. The alpha1-subunit of the DHPR contains a cytoplasmic loop which is thought to be involved in the interactions with RyR. Phosphorylation of the DHPR alpha1-subunit is also thought to play a role in the functional interaction of DHPR and RyR. Mutation in DHPR alpha1 results in excitation-contraction uncoupling, leading to muscular dysgenesis, a complete inactivity in developing skeletal muscles. Cells that do not express RyR also lack excitation-contraction coupling and exhibit a severalfold reduction in Ca2+ current density.

          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 muscle ryanodine receptor; Cardiac muscle ryanodine receptor-calcium release channel; cardiac-type ryanodine receptor; hRYR-2; islet-type ryanodine receptor; kidney-type ryanodine receptor; Ryanodine receptor; Ryanodine receptor 2; ryanodine receptor 2 (cardiac); RYR-2; Type 2 ryanodine receptor

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          Gene Aliases: ARVC2; ARVD2; RyR; RYR-2; RYR2; VTSIP

          View more View less

          UniProt ID: (Human) Q92736

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          Entrez Gene ID: (Human) 6262

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          Function(s)
          ryanodine-sensitive calcium-release channel activity calcium channel activity calcium ion binding protein binding calmodulin binding calcium-release channel activity enzyme binding protein kinase A catalytic subunit binding protein kinase A regulatory subunit binding identical protein binding protein self-association suramin binding ion channel binding calcium-induced calcium release activity
          Process(es)
          response to hypoxia regulation of heart rate embryonic heart tube morphogenesis left ventricular cardiac muscle tissue morphogenesis cardiac muscle hypertrophy detection of calcium ion calcium ion transport cellular calcium ion homeostasis positive regulation of heart rate regulation of cardiac muscle contraction by regulation of the release of sequestered calcium ion regulation of cardiac muscle contraction by calcium ion signaling release of sequestered calcium ion into cytosol by sarcoplasmic reticulum response to muscle activity calcium-mediated signaling BMP signaling pathway response to caffeine ion transmembrane transport calcium-mediated signaling using intracellular calcium source response to muscle stretch release of sequestered calcium ion into cytosol positive regulation of sequestering of calcium ion regulation of cytosolic calcium ion concentration response to redox state regulation of cardiac muscle contraction cardiac muscle contraction canonical Wnt signaling pathway calcium ion transport into cytosol sarcoplasmic reticulum calcium ion transport cellular response to caffeine cellular response to epinephrine stimulus establishment of protein localization to endoplasmic reticulum ventricular cardiac muscle cell action potential Purkinje myocyte to ventricular cardiac muscle cell signaling cell communication by electrical coupling involved in cardiac conduction type B pancreatic cell apoptotic process positive regulation of the force of heart contraction regulation of AV node cell action potential regulation of SA node cell action potential regulation of atrial cardiac muscle cell action potential regulation of ventricular cardiac muscle cell action potential positive regulation of calcium-transporting ATPase activity regulation of cardiac conduction
          It has to be done as per old AB suggested Products section.
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