CRM1 Monoclonal antibody 66763-1-Ig proteintech

$149.00
In stock
SKU
66763-1-Ig
Catalog No.SizePrice (USD)
66763-1-IG-20UL20 μL$149.00
66763-1-IG-150UL150 μL$449.00
66763-1-IG-10X150UL1.5 mL (10 x 150 μL vials)$3,592.00
Catalog Number66763-1-Ig
SynonymsXPO1, 2D3B6, Exp1, Exportin 1, Exportin-1
HostMouse
Reactivityhuman, mouse, rat
FormLiquid
FormulationPBS, Azide, Glycerol
ApplicationsWB, IHC, IF/ICC, IP, ELISA
ApplicationsWB, IHC, IF/ICC, ELISA
Host / IsotypeMouse / IgG1
Tested Applications — Positive WB detected inA431 cells, HeLa cells, HepG2 cells, Jurkat cells, K-562 cells, HSC-T6 cells, PC-12 cells, NIH/3T3 cells, RAW 264.7 cells, HEK-293 cells
Tested Applications — Positive IHC detected inhuman cervical cancer tissue, human colon cancer tissue Note: suggested antigen retrieval with TE buffer pH 9.0; (*) Alternatively, antigen retrieval may be performed with citrate buffer pH 6.0
Tested Applications — Positive IF/ICC detected inK-562 cells
Recommended Dilutions — Western Blot (WB)WB : 1:5000-1:50000
Recommended Dilutions — Immunohistochemistry (IHC)IHC : 1:500-1:2000
Recommended Dilutions — Immunofluorescence (IF)/ICCIF/ICC : 1:400-1:1600
Positive WB detected inA431 cells, HeLa cells, HepG2 cells, Jurkat cells, K-562 cells, HSC-T6 cells, PC-12 cells, NIH/3T3 cells, RAW 264.7 cells, HEK-293 cells
Positive IHC detected inhuman cervical cancer tissue, human colon cancer tissue Note: suggested antigen retrieval with TE buffer pH 9.0; (*) Alternatively, antigen retrieval may be performed with citrate buffer pH 6.0
Positive IF/ICC detected inK-562 cells
Western Blot (WB)WB : 1:5000-1:50000
Immunohistochemistry (IHC)IHC : 1:500-1:2000
Immunofluorescence (IF)/ICCIF/ICC : 1:400-1:1600
Tested Reactivityhuman, mouse, rat
Cited Reactivityhuman, mouse, rat
ClassMonoclonal
TypeAntibody
ImmunogenCatNo: Ag27337 Product name: Recombinant human XPO1 protein Source: e coli. -derived, PET28a Tag: 6*His Domain: 301-540 aa of BC032847 Sequence: NTNIRLAYSNGKDDEQNFIQNLSLFLCTFLKEHDQLIEKRLNLRETLMEALHYMLLVSEVEETEIFKICLEYWNHLAAELYRESPFSTSASPLLSGSQHFDVPPRRQLYLPMLFKVRLLMVSRMAKPEEVLVVENDQGEVVREFMKDTDSINLYKNMRETLVYLTHLDYVDTERIMTEKLHNQVNGTEWSWKNLNTLCWAIGSISGAMHEEDEKRFLVTVIKDLLGLCEQKRGKDNKAII Predict reactive species
Full Nameexportin 1 (CRM1 homolog, yeast)
Calculated Molecular Weight1071 aa, 123 kDa
Observed Molecular Weight100-110 kDa
GenBank Accession NumberBC032847
Gene SymbolCRM1
Gene ID (NCBI)7514
RRIDAB_2882109
ConjugateUnconjugated
Purification MethodProtein G purification
UNIPROT IDO14980
Storage BufferPBS with 0.02% sodium azide and 50% glycerol, pH 7.3.
Storage ConditionsStore at -20°C. Stable for one year after shipment. Aliquoting is unnecessary for -20 o C storage. 20ul sizes contain 0.1% BSA.
IF protocol for CRM1 antibody 66763-1-IgDownload protocol
IHC protocol for CRM1 antibody 66763-1-IgDownload protocol
WB protocol for CRM1 antibody 66763-1-IgDownload protocol
humanIHC PeerJ Hub gene associated with prognosis in bladder cancer is a novel therapeutic target Authors - Dengpan Fang View Article
rat,humanWB Diabetologia Saturated fatty acids entrap PDX1 in stress granules and impede islet beta cell function. Authors - Mu Zhang View Article
mouseWB Exp Gerontol Age-dependent changes in nuclear-cytoplasmic signaling in skeletal muscle. Authors - Shama R Iyer View Article
Citations20
DilutionsWB : 1:5000-1:50000 IHC : 1:500-1:2000 IF/ICC : 1:400-1:1600
IsotypeIgG1
ClonalityMonoclonal
Clone Number2D3B6
ConjugationUnconjugated

CRM1 (chromosome region maintenance 1, also known as exportin-1 or XPO1), a member of the karyopherin β family of transport receptors, is an important nuclear export receptor recognizing proteins bearing a leucine-rich nuclear export signal (PMID: 9323133). CRM1 is the major receptor for the export of proteins out of the nucleus and is also required for transport of many RNAs (PMID: 17317185). In addition to nuclear export, CRM1 also plays a role in centrosome duplication and spindle assembly (PMID: 22773955). Elevated CRM1 expression has been reported in several cancers, which implicates CRM1 as a potential anti-cancer drug target (PMID: 22677130; 21683812 ). Protocols Product Specific Protocols IF protocol for CRM1 antibody 66763-1-Ig Download protocol IHC protocol for CRM1 antibody 66763-1-Ig Download protocol WB protocol for CRM1 antibody 66763-1-Ig Download protocol Standard Protocols Click here to view our Standard Protocols

Publications

  1. Positive Feedback Regulation between KLF5 and XPO1 Promotes Cell Cycle Progression of Basal like Breast Cancer
    Journal: Adv Sci (Weinh) | Authors: Yu Tang KD Validated | Species: human | Application: WB
  2. Saturated fatty acids entrap PDX1 in stress granules and impede islet beta cell function.
    Journal: Diabetologia | Authors: Mu Zhang | Species: rat,human | Application: WB
  3. Anti-tumor efficacy of Selinexor (KPT-330) in gastric cancer is dependent on nuclear accumulation of p53 tumor suppressor.
    Journal: Sci Rep | Authors: Vinod Vijay Subhash | Application: WB
  4. Age-dependent changes in nuclear-cytoplasmic signaling in skeletal muscle.
    Journal: Exp Gerontol | Authors: Shama R Iyer | Species: mouse | Application: WB
  5. NEDD4 protects vascular endothelial cells against Angiotensin II-induced cell death via enhancement of XPO1-mediated nuclear export.
    Journal: Exp Cell Res | Authors: Jianning Xu | Species: human | Application: WB
  6. Hub gene associated with prognosis in bladder cancer is a novel therapeutic target
    Journal: PeerJ | Authors: Dengpan Fang | Species: human | Application: IHC
  7. Saturated fatty acids entrap PDX1 in stress granules and impede islet beta cell function.
    Journal: Diabetologia | Authors: Mu Zhang | Species: rat,human | Application: WB
  8. Mutant p53 upregulates HDAC6 to resist ER stress and facilitates Ku70 deacetylation, which prevents its degradation and mitigates DNA damage in colon cancer cells
    Journal: Cell Death Discov | Authors: Rossella Benedetti | Species: human | Application: WB,IP
  9. Control of SOX2 protein stability and tumorigenic activity by E3 ligase CHIP in esophageal cancer cells
    Journal: Oncogene | Authors: Li Kang | Species: human | Application: WB
  10. Role of hyperthermia in overcoming HPV‑mediated MHC‑Ⅰ downregulation and promoting immune surveillance.
    Journal: Int J Mol Med | Authors: Hanyu Wang
  11. Parylation dependent nuclear export of HMGB1 via exportin 1 contributes to morphine tolerance.
    Journal: Brain Behav Immun | Authors: Ying-Ping Liang | Species: rat | Application: WB,IF
  12. Poly (ADP-ribose) polymerase 1 promotes HuR/ELAVL1 cytoplasmic localization and inflammatory gene expression by regulating p38 MAPK activity
    Journal: Cell Mol Life Sci | Authors: Xingyue Fu | Species: human | Application: WB
  13. Age-dependent changes in nuclear-cytoplasmic signaling in skeletal muscle.
    Journal: Exp Gerontol | Authors: Shama R Iyer | Species: mouse | Application: WB
  14. Anti-tumor efficacy of Selinexor (KPT-330) in gastric cancer is dependent on nuclear accumulation of p53 tumor suppressor.
    Journal: Sci Rep | Authors: Vinod Vijay Subhash | Application: WB
  15. Cytoplasmic translocation of tripartite motif-containing 28 is critical for PRRSV-induced autophagy through promoting Vps34-Beclin1 complex formation
    Journal: J Virol | Authors: Meng Chen
  16. Nup210 Promotes Colorectal Cancer Progression by Regulating Nuclear Plasma Transport
    Journal: Lab Invest | Authors: Fangyi Han | Application: IF
  17. HuR-HuB autoregulatory network governs inflammatory factors expression.
    Journal: J Biol Chem | Authors: Xingyue Fu | Species: human, mouse | Application: WB
  18. NEDD4 protects vascular endothelial cells against Angiotensin II-induced cell death via enhancement of XPO1-mediated nuclear export.
    Journal: Exp Cell Res | Authors: Jianning Xu | Species: human | Application: WB
  19. Hub gene associated with prognosis in bladder cancer is a novel therapeutic target
    Journal: PeerJ | Authors: Dengpan Fang | Species: human | Application: IHC
  20. XPO1 Inhibition enhances sensitivity to platinum-based chemotherapy in germinal-center B-cell-like-DLBCL cells.
    Journal: Hematology | Authors: Qiongqiong Su

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