GPCR HM74 Antibody, ALEXA FLUOR 647
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Catalog numberbs-15367R-A647
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PricePlease ask
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Size100ul
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Long nameGPCR HM74 Polyclonal Antibody, ALEXA FLUOR 647 Conjugated
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Also known asAnti-GPCR HM74 PAb ALEXA FLUOR 647
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CategoryConjugated Primary Antibodies
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Conjugated withALEXA FLUOR® 647
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Host OrganismRabbit (Oryctolagus cuniculus)
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Target AntigenGPCR HM74
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SpecificityThis is a highly specific antibody against GPCR HM74.
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ModificationUnmodified
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Modification SiteNone
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ClonalityPolyclonal
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ClonePolyclonal antibody
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Concentration1ug per 1ul
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Subcellular locationExtracellular
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SourceThis antibody was obtained by immunization of the host with KLH conjugated synthetic peptide derived from human GPCR HM74
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Tested applicationsFCM, IF(IHC-P)
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Recommended dilutionsFCM(1:20-100), IF(IHC-P)(1:50-200)
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CrossreactivityHuman
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Cross reactive species detailsDue to limited amount of testing and knowledge, not every possible cross-reactivity is known.
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Background of the antigenGPCR HM74
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PurificationPurified by Protein A.
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Storage conditionsStore this antibody in aqueous buffered solution containing 1% BSA, 50% glycerol and 0.09% sodium azide. Keep refrigerated at 2 to 8 degrees Celcius for up to one year.
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Excitation emission650nm/665nm
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SynonymsG-protein coupled receptor 109B; G-protein coupled receptor HM74; G-protein coupled receptor HM74B; GPR109B; HCA3; HCAR3; HM74; HM74B; Hydroxycarboxylic acid receptor 3; Niacin receptor 2; NIACR2; Nicotinic acid receptor 2; Puma-g; PUMAG; HCAR3_HUMAN.
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PropertiesFor facs or microscopy Alexa 1 conjugate. Alexa Fluor 633 is a practical alternative to APC as well as Cy5. Bioss Primary Conjugated Antibodies. ALEXA FLUOR made this Alexa Fluor 633 conjugate that can be used in multi-color flow cytometry with instruments equipped with a second red laser or red diode. It is detected in the FL4 detector of the core's upgraded 2-laser FACScans. Like other Alexa Fluor dyes, the Anti-GPCR HM74 exhibits uncommon photo stability, making it an ideal choice for fluorescent microscopy. If you buy Antibodies supplied by Bioss Primary Conjugated Antibodies. ALEXA FLUOR they should be stored frozen at - 24°C for long term storage and for short term at + 5°C.
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ConjugationAlexa Fluor, ALEXA FLUOR 647
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French translationanticorps
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Gene target
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Gene symbolHCAR3, OXER1, HCAR1, GPBAR1, GPER1
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Short nameAnti-GPCR HM74
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TechniqueAntibody, antibodies against human proteins, antibodies for
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IsotypeImmunoglobulin G (IgG)
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LabelALEXA FLUOR 647
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Alternative nameGPCR HM74 Polyclonal Antibody, ALEXA FLUOR 647
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Alternative techniqueantibodies
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Gene info
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Identity
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Gene
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Long gene namehydroxycarboxylic acid receptor 3
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Synonyms gene
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Synonyms gene name
- G protein-coupled receptor 109B
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Synonyms
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GenBank acession
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Locus
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Discovery year2004-04-22
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Entrez gene record
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Pubmed identfication
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RefSeq identity
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Classification
- Hydroxycarboxylic acid receptors
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VEGA ID
Gene info
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Identity
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Gene
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Long gene nameoxoeicosanoid receptor 1
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Synonyms
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Synonyms name
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GenBank acession
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Locus
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Discovery year2004-04-02
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Entrez gene record
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Pubmed identfication
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RefSeq identity
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Classification
- Leukotriene receptors
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VEGA ID
Gene info
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Identity
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Gene
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Long gene namehydroxycarboxylic acid receptor 1
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Synonyms gene
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Synonyms gene name
- G protein-coupled receptor 104
- G protein-coupled receptor 81
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Synonyms
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Synonyms name
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GenBank acession
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Locus
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Discovery year2000-01-20
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Entrez gene record
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Pubmed identfication
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Classification
- Hydroxycarboxylic acid receptors
Gene info
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Identity
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Gene
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Long gene nameG protein-coupled bile acid receptor 1
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Synonyms
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GenBank acession
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Locus
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Discovery year2003-01-24
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Entrez gene record
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Pubmed identfication
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RefSeq identity
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Classification
- G protein-coupled bile acid receptor
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VEGA ID
Gene info
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Identity
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Gene
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Long gene nameG protein-coupled estrogen receptor 1
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Synonyms gene
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Synonyms gene name
- G protein-coupled receptor 30
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Synonyms
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GenBank acession
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Locus
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Discovery year1997-06-12
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Entrez gene record
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Pubmed identfication
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RefSeq identity
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Classification
- G protein-coupled estrogen receptor
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VEGA ID
MeSH Data
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Name
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ConceptScope note: In vitro method for producing large amounts of specific DNA or RNA fragments of defined length and sequence from small amounts of short oligonucleotide flanking sequences (primers). The essential steps include thermal denaturation of the double-stranded target molecules, annealing of the primers to their complementary sequences, and extension of the annealed primers by enzymatic synthesis with DNA polymerase. The reaction is efficient, specific, and extremely sensitive. Uses for the reaction include disease diagnosis, detection of difficult-to-isolate pathogens, mutation analysis, genetic testing, DNA sequencing, and analyzing evolutionary relationships.
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Tree numbers
- E05.393.620.500
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Qualifiersethics, trends, veterinary, history, classification, economics, instrumentation, methods, standards, statistics & numerical data