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RYR1 Protein

RYR1 Origin: Mouse Host: Escherichia coli (E. coli) Recombinant SDS, WB
Catalog No. ABIN6120539
  • Target See all RYR1 Proteins
    RYR1 (Ryanodine Receptor 1 (Skeletal) (RYR1))
    Protein Type
    Recombinant
    Origin
    • 3
    • 2
    • 2
    Mouse
    Source
    • 7
    Escherichia coli (E. coli)
    Application
    SDS-PAGE (SDS), Western Blotting (WB)
    Characteristics
    Ryanodine Receptor 1, Skeletal (RYR1) Protein
    Top Product
    Discover our top product RYR1 Protein
  • Application Notes
    Optimal working dilution should be determined by the investigator.
    Comment

    Please note that the majority of this suppliers proteins are partial length rather than full length.
    We recommend customers to inquire.

    Restrictions
    For Research Use only
  • Format
    Liquid
    Concentration
    200 μg/mL
    Buffer
    Prior to lyophilization: 20 mM Tris, 150 mM NaCl,  pH 8.0, containing 1 mM EDTA, 1 mM DTT, 0.01 % SKL, 5 % Trehalose and Proclin-300.
    Preservative
    Dithiothreitol (DTT), Other preservative, ProClin
    Precaution of Use
    This product contains ProClin and Dithiothreitol (DTT): POISONOUS AND HAZARDOUS SUBSTANCES which should be handled by trained staff only.
    Storage
    4 °C,-80 °C
    Storage Comment
    Store at 2-8 °C for up to one month. Store at -80 °C for up to one year. Avoid repeated freeze/thaw cycles.
  • Target
    RYR1 (Ryanodine Receptor 1 (Skeletal) (RYR1))
    Alternative Name
    Ryanodine Receptor 1, Skeletal (RYR1 Products)
    Synonyms
    ryr1 Protein, RYR1 Protein, alphaRYR Protein, CCO Protein, MHS Protein, MHS1 Protein, RYDR Protein, RYR Protein, RYR-1 Protein, SKRR Protein, Ryr1l Protein, CRC Protein, AI528790 Protein, Ryr Protein, skrr Protein, ryanodine receptor 1 Protein, ryanodine receptor 1 (skeletal) Protein, ryanodine receptor 1a (skeletal) Protein, ryanodine receptor 1, skeletal muscle Protein, RYR1 Protein, ryr1a Protein, Ryr1 Protein
    Molecular Weight
    63.2 kDa
    UniProt
    E9PZQ0
    Pathways
    Myometrial Relaxation and Contraction, Skeletal Muscle Fiber Development
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