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IGF2BP1 Antibody

  • 货号:
    CSB-PA406823
  • 规格:
    ¥1100
  • 图片:
    • The image on the left is immunohistochemistry of paraffin-embedded Human liver cancer tissue using CSB-PA406823(IGF2BP1 Antibody) at dilution 1/40, on the right is treated with synthetic peptide. (Original magnification: ×200)
    • The image on the left is immunohistochemistry of paraffin-embedded Human lung cancer tissue using CSB-PA406823(IGF2BP1 Antibody) at dilution 1/40, on the right is treated with synthetic peptide. (Original magnification: ×200)
    • Gel: 10%SDS-PAGE, Lysate: 50 μg, Lane: Hela cells, Primary antibody: CSB-PA406823(IGF2BP1 Antibody) at dilution 1/750, Secondary antibody: Goat anti rabbit IgG at 1/8000 dilution, Exposure time: 1 minute
  • 其他:

产品详情

  • Uniprot No.:
    Q9NZI8
  • 基因名:
    IGF2BP1
  • 别名:
    Coding region determinant-binding protein antibody; CRD BP antibody; CRD-BP antibody; CRDBP antibody; IF2B1 antibody; IF2B1_HUMAN antibody; IGF II mRNA binding protein 1 antibody; IGF-II mRNA-binding protein 1 antibody; IGF2 mRNA binding protein 1 antibody; IGF2 mRNA-binding protein 1 antibody; IGF2BP1 antibody; IMP 1 antibody; IMP-1 antibody; IMP1 antibody; Insulin like growth factor 2 mRNA binding protein 1 antibody; Insulin-like growth factor 2 mRNA-binding protein 1 antibody; VICKZ family member 1 antibody; VICKZ1 antibody; ZBP 1 antibody; ZBP-1 antibody; ZBP1 antibody; Zip code binding protein 1 antibody; Zip code-binding protein 1 antibody; Zipcode binding protein 1 antibody; Zipcode-binding protein 1 antibody
  • 宿主:
    Rabbit
  • 反应种属:
    Human,Mouse,Rat
  • 免疫原:
    Synthetic peptide of Human IGF2BP1
  • 免疫原种属:
    Homo sapiens (Human)
  • 标记方式:
    Non-conjugated
  • 抗体亚型:
    IgG
  • 纯化方式:
    Antigen affinity purification
  • 浓度:
    It differs from different batches. Please contact us to confirm it.
  • 保存缓冲液:
    -20°C, pH7.4 PBS, 0.05% NaN3, 40% Glycerol
  • 产品提供形式:
    Liquid
  • 应用范围:
    ELISA,WB,IHC
  • 推荐稀释比:
    Application Recommended Dilution
    ELISA 1:1000-1:5000
    WB 1:500-1:2000
    IHC 1:50-1:200
  • Protocols:
  • 储存条件:
    Upon receipt, store at -20°C or -80°C. Avoid repeated freeze.
  • 货期:
    Basically, we can dispatch the products out in 1-3 working days after receiving your orders. Delivery time maybe differs from different purchasing way or location, please kindly consult your local distributors for specific delivery time.

产品评价

靶点详情

  • 功能:
    RNA-binding factor that recruits target transcripts to cytoplasmic protein-RNA complexes (mRNPs). This transcript 'caging' into mRNPs allows mRNA transport and transient storage. It also modulates the rate and location at which target transcripts encounter the translational apparatus and shields them from endonuclease attacks or microRNA-mediated degradation. Plays a direct role in the transport and translation of transcripts required for axonal regeneration in adult sensory neurons. Regulates localized beta-actin/ACTB mRNA translation, a crucial process for cell polarity, cell migration and neurite outgrowth. Co-transcriptionally associates with the ACTB mRNA in the nucleus. This binding involves a conserved 54-nucleotide element in the ACTB mRNA 3'-UTR, known as the 'zipcode'. The RNP thus formed is exported to the cytoplasm, binds to a motor protein and is transported along the cytoskeleton to the cell periphery. During transport, prevents ACTB mRNA from being translated into protein. When the RNP complex reaches its destination near the plasma membrane, IGF2BP1 is phosphorylated. This releases the mRNA, allowing ribosomal 40S and 60S subunits to assemble and initiate ACTB protein synthesis. Monomeric ACTB then assembles into the subcortical actin cytoskeleton. During neuronal development, key regulator of neurite outgrowth, growth cone guidance and neuronal cell migration, presumably through the spatiotemporal fine tuning of protein synthesis, such as that of ACTB. May regulate mRNA transport to activated synapses. Binds to and stabilizes ABCB1/MDR-1 mRNA. During interstinal wound repair, interacts with and stabilizes PTGS2 transcript. PTGS2 mRNA stabilization may be crucial for colonic mucosal wound healing. Binds to the 3'-UTR of IGF2 mRNA by a mechanism of cooperative and sequential dimerization and regulates IGF2 mRNA subcellular localization and translation. Binds to MYC mRNA, in the coding region instability determinant (CRD) of the open reading frame (ORF), hence prevents MYC cleavage by endonucleases and possibly microRNA targeting to MYC-CRD. Binds to the 3'-UTR of CD44 mRNA and stabilizes it, hence promotes cell adhesion and invadopodia formation in cancer cells. Binds to the oncofetal H19 transcript and to the neuron-specific TAU mRNA and regulates their localizations. Binds to and stabilizes BTRC/FBW1A mRNA. Binds to the adenine-rich autoregulatory sequence (ARS) located in PABPC1 mRNA and represses its translation. PABPC1 mRNA-binding is stimulated by PABPC1 protein. Prevents BTRC/FBW1A mRNA degradation by disrupting microRNA-dependent interaction with AGO2. Promotes the directed movement of tumor-derived cells by fine-tuning intracellular signaling networks. Binds to MAPK4 3'-UTR and inhibits its translation. Interacts with PTEN transcript open reading frame (ORF) and prevents mRNA decay. This combined action on MAPK4 (down-regulation) and PTEN (up-regulation) antagonizes HSPB1 phosphorylation, consequently it prevents G-actin sequestration by phosphorylated HSPB1, allowing F-actin polymerization. Hence enhances the velocity of cell migration and stimulates directed cell migration by PTEN-modulated polarization. Interacts with Hepatitis C virus (HCV) 5'-UTR and 3'-UTR and specifically enhances translation at the HCV IRES, but not 5'-cap-dependent translation, possibly by recruiting eIF3. Interacts with HIV-1 GAG protein and blocks the formation of infectious HIV-1 particles. Reduces HIV-1 assembly by inhibiting viral RNA packaging, as well as assembly and processing of GAG protein on cellular membranes. During cellular stress, such as oxidative stress or heat shock, stabilizes target mRNAs that are recruited to stress granules, including CD44, IGF2, MAPK4, MYC, PTEN, RAPGEF2 and RPS6KA5 transcripts.
  • 基因功能参考文献:
    1. lncRNA THOR is up-regulated in retinoblastoma, and its over-expression significantly enhances the malignant phenotype transformation of retinoblastoma cells by up-regulating c-myc and TGF2BP1 expression. PMID: 30119193
    2. SOX12 can increase the expression of CDK4 and IGF2BP1, which confer malignant phenotypes to Hepatocellular Carcinoma. PMID: 28975985
    3. report insulin-like growth factor-II binding protein 1 (IGF2BP1) as a novel interacting partner of p38 MAPK. PMID: 28497370
    4. IGF2BP1 mediates posttranscriptional loss of BCL11A in cultured human adult erythroblasts PMID: 28652347
    5. HCG11 exerted its effect on Hepatocellular carcinoma (HCC)via interaction with IGF2BP1, leading to activation of MAPK signaling, which eventually promoted the progression of HCC PMID: 28677801
    6. miR-98-5p, downregulated in HCC, inhibits proliferation while inducing apoptosis in HCC LM3 cells, partly at least, through directly targeting IGF2BP1 PMID: 28244848
    7. Findings suggest a MicroRNA-140-5p (miR-140-5p)-Insulin like growth factor 2 mRNA binding protein 1 (IGF2BP1) regulatory circuit for CC pathogenesis, and miR-140-5p may be a potential target for CC therapy. PMID: 27588393
    8. Our studies provide insights into a molecular mechanism that the positive function of IMP1 to inhibit breast tumor growth and metastasis PMID: 26910917
    9. The regions encoding 71 microRNAs (miRs) were deleted in at least 25% of tumor specimens. Five of these recurrently deleted miRs targeted the insulin-like growth factor 2 mRNA-binding protein 1 (IGF2BP1) gene product, and a correlating 100-fold upregulation of IGF2BP1 mRNA was seen in tumor specimens PMID: 28486549
    10. Insight into molecular interactions between CRD-BP and MITF mRNA. PMID: 28182633
    11. IGF2BP1 indirectly potentiates ETV6/RUNX1-RAC1-STAT3 signaling axis by sustaining appropriate ETV6/RUNX1 and STAT3 transcript levels in REH cells. PMID: 27239736
    12. The findings indicate that the tumor-suppressive roles of the let-7 family are antagonized by a potent and self-promoting triangle consisting of IGF2BP1 (potentially all IGF2BPs), LIN28B and HMGA2. PMID: 26917013
    13. The results from this study demonstrate the potential importance of the two-stem-loop motif as a target region for the inhibition of the CRD-BP-GLI1 RNA interaction and Hedgehog signaling pathway. PMID: 27036131
    14. these findings suggest that miR-150 functions as a tumor suppressor in Osteosarcoma (OS) partially by targeting IGF2BP1 PMID: 26561465
    15. ETV6/RUNX1 transcript is a target of RNA-binding protein IGF2BP1 in t(12;21)(p13;q22)-positive acute lymphoblastic leukemia. PMID: 26852652
    16. Data show that ONECUT2, IGF2BP1, and ANXA2 proteins were confirmed to be microRNA-9 (miR-9) targets and aberrantly upregulated in hepatocellular carcinoma (HCC). PMID: 26547929
    17. The tumor-suppressive role of stromal IMP1 and its ability to modulate protumorigenic factors suggest that IMP1 status is important for the initiation and growth of epithelial tumors PMID: 26194191
    18. IGF2BP1 as a direct and functional target of miR-196b. PMID: 25889892
    19. Data show that insulin-like growth factor-2-mRNA-binding proteins IGF2BP1, IGF2BP2, and IGF2BP3 are direct targets of microRNA-1275 (miR-1275). PMID: 26160756
    20. High CRD-BP expression is associated with Breast Tumor. PMID: 25861986
    21. Data demonstrate that IGF2BP1 is a potential oncogene and an independent negative prognostic factor in neuroblastoma. PMID: 25753434
    22. Results identify IGF2BP1 as a critical translational regulator of cIAP1-mediated apoptotic resistance in rhabdomyosarcoma. PMID: 24704827
    23. miR-873 negatively affected the carcinogenesis and metastasis of GBM by down-regulating the expression of IGF2BP1, which stabilizes the mRNA transcripts of its target genes PMID: 25670861
    24. These results indicate that IGF2BP1 and TET1/2 contribute to the stemness of MSCs, at least regarding their proliferative potential. PMID: 24915579
    25. MicroRNA-340-mediated degradation of MITF mRNA is inhibited by CRD-BP. PMID: 25414259
    26. Two KH domains of CRD-BP are required for efficient binding to oncogenic mRNAs and for granule formation in zebrafish embryos. PMID: 25389298
    27. A 14;17 translocation resulting in an IGH-IGF2BP1 fusion is associated with B acute lymphoblastic leukemia. PMID: 25195122
    28. CRD-BP is overexpressed in basal cell carcinoma and its expression positively correlates with the activation of both Wnt and Hh signaling pathways PMID: 24468749
    29. The RNA-binding protein IGF2BP1 is an important protumorigenic factor in liver carcinogenesis. PMID: 24395596
    30. Data suggest GHET1 (gastric carcinoma high expressed transcript 1) is prognostic factor for gastric carcinoma; GHET1 promotes c-Myc (proto-oncogene proteins c-Myc) mRNA stability/expression, binds IGF2BP1, and promotes gastric carcinoma growth. PMID: 24397586
    31. IGF2BP1 acts as an adaptor protein that recruits the CCR4-NOT complex and thereby initiates the degradation of the lncRNA HULC. PMID: 23728852
    32. Shows role for CRD-BP in the regulation of melanoma cell invasion and highlights the importance of the hypoxic microenvironment in determining cell fate. PMID: 23038779
    33. our study suggests that IMP1might play an important role in the progression of choriocarcinoma through the regulation of cell migration and invasion. PMID: 23911878
    34. in both T47D and MDA231 human breast carcinoma cells IMP1/ZBP1 functions to suppress cell invasion PMID: 22266909
    35. IGF2BP1 is a potent oncogenic factor that regulates the adhesion, migration and invasiveness of tumor cells by modulating intracellular signaling. PMID: 22983196
    36. The defective splicing caused by the ISCU intron mutation in patients with myopathy with lactic acidosis is repressed by PTBP1 but can be derepressed by IGF2BP1. PMID: 22125086
    37. Data show that the let-7 (let-7d and let-7g) target IMP-1 stabilizes the mRNA of MDR1. PMID: 21618519
    38. IGF2BP1 promotes the velocity and directionality of tumor-derived cell migration by determining the cytoplasmic fate of two novel target mRNAs: MAPK4 and PTEN PMID: 22279049
    39. sh-RNA knockdown of CRD-BP enhances the effect of dacarbazine, temozolomide, vinblastine, & etoposide on both primary and metastatic melanoma cell lines. PMID: 21981993
    40. Studies identify a novel proapoptotic gene target, CYFIP2, which is downregulated by IMP-1, and mediates the regulation of cell survival and K-Ras expression in colon cancer cells. PMID: 21252116
    41. IMP1 plays a role in regulating the packaging of MLV genomic RNA and can be used for improving production of retroviral vectors PMID: 21209918
    42. IGF2BP1 genotype, haplotype and genetic model studies in metabolic syndrome traits and diabetes PMID: 20627640
    43. IMP1 localization is associated with motility and the major functions of IMP1 are carried out by the phylogenetically conserved KH domains PMID: 11973350
    44. Aberrant CRD-BP expression may interfere with c-myc regulation. Copy number gains at 8q24 (c-myc), were seen in 48.3% of tumors, gains at 17q21 (CRD-BP) in 18.3%,& CRD-BP was seen in 58.5%, implying mechanisms of activation other than gene amplification. PMID: 12532419
    45. IMP1 translocates to the nucleus and contains nuclear export signals within the RNA-binding KH2 and KH4 domains. PMID: 12921532
    46. IMP-1 may have a role in progression of ovarian cancer PMID: 14767552
    47. Intestinal epithelial cells continue to express IMP1 postnatally, and Imp1(-/-) mice exhibited impaired development of the intestine, with small and misshapen villi and twisted colon crypts. PMID: 15121863
    48. highest frequency of CRD-BP positive tumors was observed in meningiomas PMID: 15159028
    49. intimate association of fragile X mental retardation protein and IMP1 suggests a link between mRNA transport and translational repression in mammalian cells PMID: 15282548
    50. A cooperative mechanism for the binding of IMP-1 to RNA. PMID: 15314207

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  • 亚细胞定位:
    Nucleus. Cytoplasm. Cytoplasm, perinuclear region. Cell projection, lamellipodium. Cell projection, dendrite. Cell projection, dendritic spine. Cell projection, growth cone. Cell projection, filopodium. Cell projection, axon.
  • 蛋白家族:
    RRM IMP/VICKZ family
  • 组织特异性:
    Mainly expressed in the embryo, including in fetal liver, fetal lung, fetal kidney, fetal thymus (at protein level). Also expressed follicles of ovary, as well as in gonocytes of testis, spermatogonia, semen, oocytes and placenta (at protein level). Expre
  • 数据库链接:

    HGNC: 28866

    OMIM: 608288

    KEGG: hsa:10642

    STRING: 9606.ENSP00000290341

    UniGene: Hs.144936