RYR3 anticorps (Intracellular, N-Term)
Aperçu rapide pour RYR3 anticorps (Intracellular, N-Term) (ABIN7885376)
Antigène
Voir toutes RYR3 AnticorpsReactivité
Hôte
Clonalité
Conjugué
Application
Classe de qualité
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Épitope
- AA 935-949, Intracellular, N-Term
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Fonction
- A Rabbit Polyclonal Antibody to Ryanodine Receptor 3
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Homologie
- Rat,mouse - identical
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Purification
- Affinity purified on immobilized antigen.
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Immunogène
- CHIAHVNPAAEEDLK, corresponding to amino acid residues 935-949 of human RyR3
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Isotype
- IgG
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Indications d'application
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WB: 1:200
FC: The optimal concentration should be determined by the user
ICC: The optimal concentration should be determined by the user
IHC: 1:100
IP: The optimal concentration should be determined by the user
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Commentaires
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Negative Control: (ABIN7236746)
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Restrictions
- For Research Use only
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Format
- Lyophilized
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Reconstitution
- 0.2 mL double distilled water (DDW)
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Concentration
- 1 mg/mL
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Buffer
- PBS pH 7.4
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Agent conservateur
- Without preservative
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Stock
- -20 °C
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Stockage commentaire
- The antibody ships as a lyophilized powder at room temperature. Upon arrival, it should be stored at -20°C
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- RYR3 (Ryanodine Receptor 3 (RYR3))
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Autre désignation
- RyR3
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Sujet
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Synonyms: RyR3, Brain-type ryanodine receptor
Description: It is well established that cytosolic calcium (Ca2+) acts as a key second messenger in many intracellular pathways including synaptic transmission, muscle contraction, hormonal secretion, cell growth and proliferation.1,2 The primary intracellular Ca2+ storage/release organelle in most cells is the endoplasmic reticulum (ER) or the sarcoplasmic reticulum (SR) in striated muscle cells.The ER and SR contain two Ca2+ release channel families, the inositol trisphosphate receptors (IP3Rs) and the ryanodine receptors (RyRs).3The ryanodine receptor family consists of three different isoforms: the skeletal muscle isoform, ryanodine receptor type 1 (RyR1), the cardiac muscle isoform, ryanodine receptor type 2 (RyR2) and the brain isoform, ryanodine receptor type 3 (RyR3).3The ryanodine receptors are homotetrameric proteins, which upon assembly create a Ca2+ conducting channel. They play a key role in the mechanism of excitation-contraction coupling in striated muscle. Binding of ryanodine (a poisonous alkaloid found in the South American plant Ryania speciosa) to the ryanodine receptor causes two major changes in the channel: a reduction in single-channel conductance and a marked increase in the open state probability, leading to an overall increase/decrease in the Ca2+ release capability of the channel.RyR3 is the most widely expressed RyR channel which is predominantly expressed in smooth muscle tissues and certain regions of the brain.
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ID gène
- 6263
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UniProt
- Q15413
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Pathways
- Myometrial Relaxation and Contraction
Antigène
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