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ELK Biotechnology
SKU:ES4671
Relaxin 3 rabbit pAb
Relaxin 3 rabbit pAb
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$250.00 USD
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Applications: IHC;IF;ELISA
Reactivity: Human;Rat;Mouse;
Source: Rabbit
Dilution: Immunohistochemistry: 1/100 - 1/300. ELISA: 1/40000. Not yet tested in other applications.
Immunogen: Synthesized peptide derived from the Internal region of human Relaxin 3.
Storage_stability: -20°C/1 year
Clonality: Polyclonal
Isotype: IgG
Concentration: 1 mg/ml
Human_gene_id: 117579
Human_swiss_prot_no: Q8WXF3
Subcellular_location: Secreted.
Other_name: RLN3; INSL7; RXN3; ZINS4; Relaxin-3; Insulin-like peptide INSL7; Insulin-like peptide 7; Prorelaxin H3
Background: relaxin 3(RLN3) Homo sapiens This gene encodes a member of the relaxin family of insulin-like hormones that is expressed predominantly in the brain and plays a role in physiological processes such as stress, memory and appetite regulation. The encoded protein is a precursor that is proteolytically processed to generate a heterodimeric mature form consisting A and B chains interlinked by disulfide bonds. Alternative splicing results in multiple transcript variants encoding different isoforms. [provided by RefSeq, Jul 2015],
Reactivity: Human;Rat;Mouse;
Source: Rabbit
Dilution: Immunohistochemistry: 1/100 - 1/300. ELISA: 1/40000. Not yet tested in other applications.
Immunogen: Synthesized peptide derived from the Internal region of human Relaxin 3.
Storage_stability: -20°C/1 year
Clonality: Polyclonal
Isotype: IgG
Concentration: 1 mg/ml
Human_gene_id: 117579
Human_swiss_prot_no: Q8WXF3
Subcellular_location: Secreted.
Other_name: RLN3; INSL7; RXN3; ZINS4; Relaxin-3; Insulin-like peptide INSL7; Insulin-like peptide 7; Prorelaxin H3
Background: relaxin 3(RLN3) Homo sapiens This gene encodes a member of the relaxin family of insulin-like hormones that is expressed predominantly in the brain and plays a role in physiological processes such as stress, memory and appetite regulation. The encoded protein is a precursor that is proteolytically processed to generate a heterodimeric mature form consisting A and B chains interlinked by disulfide bonds. Alternative splicing results in multiple transcript variants encoding different isoforms. [provided by RefSeq, Jul 2015],
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