Olfactory Receptor, Family 2, Subfamily H, Member 2 (OR2H2) (C-Term) antibody

Details for Product No. ABIN611248
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Antigen
Synonyms I7, MOR103-15, Olfr41, FAT11, OLFR2, OLFR42B, OR2H3, dJ271M21.2, hs6M1-12
Epitope
C-Term
(18), (2), (2), (1), (1), (1)
Reactivity
Human
(30), (3)
Host
Rabbit
(32), (1)
Clonality
Polyclonal
Conjugate
Un-conjugated
(1), (1), (1), (1), (1), (1)
Application
Western Blotting (WB)
(29), (16), (4), (4), (3), (1), (1)
Pubmed 3 references available
Quantity 50 μg
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Availability Will be delivered in 8 to 10 Business Days
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Catalog No. ABIN611248
551.83 $
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Immunogen Synthetic peptide from C-terminus of human OR2H2 (NP_009091.3, O95918).
Specificity Human OR2H2
Predicted Reactivity Percent identity by BLAST analysis: Human (100%) Pig (85%).
Purification Immunoaffinity Chromatography
Alternative Name OR2H3 / OR2H2
Background Standard Gene Symbol: OR2H2, Gene Family: GPCR, Gene Subfamily: Olfactory, Synonyms: OR2H2, DJ271M21.2, FAT11, Hs6M1-12, Olfactory receptor 2, OR2H3, Olfactory receptor 2H2, Olfactory receptor 2H3, Olfactory receptor OR6-36, OLFR42B
Gene ID 7932
UniProt O95918
Application Notes WB (0.2 - 1 µg/mL)
Restrictions For Research Use only
Format Lyophilized
Reconstitution Distilled water
Buffer Lyophilized from PBS with 2% sucrose
Handling Advice Avoid repeat freeze-thaw cycles.
Storage 4 °C/-20 °C
Storage Comment Long term: -20°C, Short term: +4°C, Avoid freeze-thaw cycles.
Supplier Images
anti-Olfactory Receptor, Family 2, Subfamily H, Member 2 (OR2H2) (C-Term) antibody anti-Olfactory Receptor, Family 2, Subfamily H, Member 2 (OR2H2) (C-Term) antibody
Product cited in: Wallner, Meera, Toro: "Determinant for beta-subunit regulation in high-conductance voltage-activated and Ca(2+)-sensitive K+ channels: an additional transmembrane region at the N terminus." in: Proceedings of the National Academy of Sciences of the United States of America, Vol. 93, Issue 25, pp. 14922-7, 1997 (PubMed).

Díaz, Meera, Amigo et al.: "Role of the S4 segment in a voltage-dependent calcium-sensitive potassium (hSlo) channel." in: The Journal of biological chemistry, Vol. 273, Issue 49, pp. 32430-6, 1999 (PubMed).

Alioua, Tanaka, Wallner et al.: "The large conductance, voltage-dependent, and calcium-sensitive K+ channel, Hslo, is a target of cGMP-dependent protein kinase phosphorylation in vivo." in: The Journal of biological chemistry, Vol. 273, Issue 49, pp. 32950-6, 1999 (PubMed).

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