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FOXO1 Antibody, FITC Conjugated

FOXO1 Antibody, FITC Conjugated size: 0.1ml 333

Price 333
Size 0.1ml
Long name FITC Conjugated, FOXO1 Polyclonal Antibody
CategoryConjugated Primary Antibodies
ConjugationAnti-FITC Antibody
Host OrganismRabbit (Oryctolagus cuniculus)
Target AntigenFOXO1
SpecificityThis is a highly specific antibody against FOXO1
ModificationUnmodified
Modification siteNone
ClonalityPolyclonal
ClonePolyclonal antibody
Concentration1ug per 1ul
Immunogen_range230-280/655
Subcellular location Nucleus, Cytoplasm
SourceKLH conjugated synthetic peptide derived from human FOXO1
Gene ID number2308
Swiss ProtQ12778
Tested applicationsIF(IHC-P)
Recommended dilutionsIF(IHC-P)(1:50-200)
Crossreactivity Mouse, Rat, Human
Crossreactive species details not every possible cross-reactivity is known, Due to limited amount of testing and knowledge
Antigen background Activity suppressed by insulin, Acts synergistically with ATF4 to suppress osteocalcin/BGLAP activity, Also suppresses the transcriptional activity of RUNX2, Binds to the insulin response element (IRE) with consensus sequence 5'-TT[G/A]TTTTG-3' and the related Daf-16 family binding element (DBE) with consensus sequence 5'-TT[G/A]TTTAC-3', G6PC and PCK1, Important regulator of cell death acting downstream of CDK1, In hepatocytes, Main regulator of redox balance and osteoblast numbers and controls bone mass, Mediates insulin action on adipose tissue, Orchestrates the endocrine function of the skeleton in regulating glucose metabolism, PKB/AKT1 and SKT4/MST1, Promotes neural cell death, Regulates the expression of adipogenic genes such as PPARG during preadipocyte differentiation and, Regulates the transcriptional activity of GADD45A and repair of nitric oxide-damaged DNA in beta-cells, Required for the autophagic cell death induction in response to starvation or oxidative stress in a transcription-independent manner, adipocyte size and adipose tissue-specific gene expression in response to excessive calorie intake, an upstream activator of osteocalcin/BGLAP, increasing glucose levels and triggering glucose intolerance and insulin insensitivity, promotes gluconeogenesis by acting together with PPARGC1A and CEBPA to activate the expression of genes such as IGFBP1, Transcription factor that is the main target of insulin signaling and regulates metabolic homeostasis in response to oxidative stress
Purification methodThis antibody was purified via Protein A
Storage conditions 50% glycerol and 0, Store refrigerated at 2 to 8 degrees Celcius for up to 1 year, 09% sodium azide, Keep the antibody in an aqueous buffered solution containing 1% BSA
Excitation Emission494nm/518nm
Synonyms FKH1
Properties Bioss Primary Conjugated Antibodies FITC is highly sensitive to pH extremes, FITC has a green emission that's usually collected at 530 nanometers, FITC has a high quantum yield (efficiency of energy transfer from absorption to emission fluorescence) and approximately half of the absorbed photons are emitted as fluorescent light, For fluorescent microscopy applications, This Bioss Primary Conjugated Antibodies Fluorescein isothiocyanate (FITC) antibody is currently after some BD antibodies the most commonly used fluorescent dye for FACS, When excited at 488 nanometers, its photo bleaching effects are not observed due to a very brief interaction at the laser intercept, the 1 FITC is seldom used as it photo bleaches rather quickly though in flow cytometry applications, the FL1 detector of a FACSCalibur or FACScan, C, C for long term storage and for short term at + 5°, If you buy Antibodies supplied by Bioss Primary Conjugated Antibodies they should be stored frozen at - 24°
Gene targetFOXO1 Conjugated
Short name FITC Conjugated, FOXO1 Antibody
Technique Fluorescein, antibodies against human proteins, antibodies for, antibody Conjugates, Antibody
LabelFITC
Alternative name fluorecein coupled, forkhead box O1 (Antibody to)
Alternative techniqueantibodies
Alternative to gene target DNA-templated and biological process this GO :0006355 and regulation of transcription, DNA-templated and biological process this GO :0006357 and regulation of transcription from RNA polymerase II promoter and biological process this GO :0006473 and protein acetylation and biological process this GO :0006915 and apoptotic process and biological process this GO :0006974 and cellular response to DNA damage stimulus and biological process this GO :0007173 and epidermal growth factor receptor signaling pathway and biological process this GO :0008286 and insulin receptor signaling pathway and biological process this GO :0008543 and fibroblast growth factor receptor signaling pathway and biological process this GO :0009267 and cellular response to starvation and biological process this GO :0010508 and positive regulation of autophagy and biological process this GO :0031018 and endocrine pancreas development and biological process this GO :0031625 and ubiquitin protein ligase binding and molecular function this GO :0032869 and cellular response to insulin stimulus and biological process this GO :0032873 and negative regulation of stress-activated MAPK cascade and biological process this GO :0034599 and cellular response to oxidative stress and biological process this GO :0035947 and regulation of gluconeogenesis by regulation of transcription from RNA polymerase II promoter and biological process this GO :0038095 and Fc-epsilon receptor signaling pathway and biological process this GO :0042127 and regulation of cell proliferation and biological process this GO :0042593 and glucose homeostasis and biological process this GO :0043065 and positive regulation of apoptotic process and biological process this GO :0043066 and negative regulation of apoptotic process and biological process this GO :0043565 and sequence-specific DNA binding and molecular function this GO :0045087 and innate immune response and biological process this GO :0045444 and fat cell differentiation and biological process this GO :0045599 and negative regulation of fat cell differentiation and biological process this GO :0045722 and positive regulation of gluconeogenesis and biological process this GO :0045732 and positive regulation of protein catabolic process and biological process this GO :0045892 and negative regulation of transcription, DNA-templated and biological process this GO :0045893 and positive regulation of transcription, DNA-templated and biological process this GO :0045944 and positive regulation of transcription from RNA polymerase II promoter and biological process this GO :0048011 and neurotrophin TRK receptor signaling pathway and biological process this GO :0048015 and phosphatidylinositol-mediated signaling and biological process this GO :0051721 and protein phosphatase 2A binding and molecular function this GO :0070417 and cellular response to cold and biological process this GO :0071455 and cellular response to hyperoxia and biological process this GO :0071732 and cellular response to nitric oxide and biological process this GO :2000505 and regulation of energy homeostasis and biological process, FKH1 and FKHR and FOXO1A, FOXO1 and IDBG-26475 and ENSG00000150907 and 2308, FOXO1 and IDBG-629639 and ENSBTAG00000044105 and 506618, Foxo1 and IDBG-143370 and ENSMUSG00000044167 and 56458, nuclei, protein phosphatase 2A binding, this GO :0000122 and negative regulation of transcription from RNA polymerase II promoter and biological process this GO :0000989 and transcription factor binding transcription factor activity and molecular function this GO :0001078 and RNA polymerase II core promoter proximal region sequence-specific DNA binding transcription factor activity involved in negative regulation of transcription and molecular function this GO :0001568 and blood vessel development and biological process this GO :0001659 and temperature homeostasis and biological process this GO :0001678 and cellular glucose homeostasis and biological process this GO :0003677 and DNA binding and molecular function this GO :0003682 and chromatin binding and molecular function this GO :0003700 and sequence-specific DNA binding transcription factor activity and molecular function this GO :0005515 and protein binding and molecular function this GO :0005634 and nucleus and cellular component this GO :0005654 and nucleoplasm and cellular component this GO :0005737 and cytoplasm and cellular component this GO :0005739 and mitochondrion and cellular component this GO :0005829 and cytosol and cellular component this GO :0006351 and transcription, this GO :0000989: transcription factor binding transcription factor activity, this GO :0000989: transcription factor binding transcription factor activity and also this GO :0001078: RNA polymerase II core promoter proximal region sequence-specific DNA binding transcription factor activity involved in negative regulation of transcription and also this GO :0003677: DNA binding and also this GO :0003682: chromatin binding and also this GO :0003700: sequence-specific DNA binding transcription factor activity and also this GO :0005515: protein binding and also this GO :0031625: ubiquitin protein ligase binding and also this GO :0043565: sequence-specific DNA binding and also this GO :0051721: protein phosphatase 2A binding, this GO :0001078: RNA polymerase II core promoter proximal region sequence-specific DNA binding transcription factor activity involved in negative regulation of transcription, this GO :0003677: DNA binding, this GO :0003682: chromatin binding, this GO :0003700: sequence-specific DNA binding transcription factor activity, this GO :0005515: protein binding, this GO :0031625: ubiquitin protein ligase binding, this GO :0043565: sequence-specific DNA binding, this GO :0051721: protein phosphatase 2A binding, forkhead box O1
Identity 3819
Gene FOXO1
Long gene name forkhead box O1
Synonyms gene FKHR FOXO1A
Synonyms gene name forkhead homolog in rhabdomyosarcoma
Locus 13q14, 11
Discovery year 1994-01-07
Entrez gene record 2308
Pubmed identfication 8275086 15057823
RefSeq identity NM_002015
Classification Forkhead boxes
Havana BLAST/BLAT OTTHUMG00000016775

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