SMAD2 / SMAD3 antibody
GTX111123
ApplicationsFlow Cytometry, ImmunoFluorescence, ImmunoPrecipitation, Western Blot, ChIP Chromatin ImmunoPrecipitation, ImmunoCytoChemistry, ImmunoHistoChemistry, ImmunoHistoChemistry Paraffin
Product group Antibodies
TargetSMAD3
Overview
- SupplierGeneTex
- Product NameSMAD2 / SMAD3 antibody
- Delivery Days Customer9
- Application Supplier NoteWB: 1:1000-1:20000. ICC/IF: 1:100-1:1000. IHC-P: 1:100-1:1000. IP: 1:1000-1:1000. *Optimal dilutions/concentrations should be determined by the researcher.Not tested in other applications.
- ApplicationsFlow Cytometry, ImmunoFluorescence, ImmunoPrecipitation, Western Blot, ChIP Chromatin ImmunoPrecipitation, ImmunoCytoChemistry, ImmunoHistoChemistry, ImmunoHistoChemistry Paraffin
- CertificationResearch Use Only
- ClonalityPolyclonal
- Concentration0.75 mg/ml
- ConjugateUnconjugated
- Gene ID4088
- Target nameSMAD3
- Target descriptionSMAD family member 3
- Target synonymsHSPC193, HsT17436, JV15-2, LDS1C, LDS3, MADH3, hMAD-3, hSMAD3, mad3, mothers against decapentaplegic homolog 3, MAD homolog 3, MAD, mothers against decapentaplegic homolog 3, SMA- and MAD-related protein 3, SMAD, mothers against DPP homolog 3, mad homolog JV15-2, mad protein homolog, mothers against DPP homolog 3
- HostRabbit
- IsotypeIgG
- Storage Instruction-20°C or -80°C,2°C to 8°C
- UNSPSC12352203
References
- Chen HC, Chiou HC, Tsai ML, et al. Effects of Montelukast on Arsenic-Induced Epithelial-Mesenchymal Transition and the Role of Reactive Oxygen Species Production in Human Bronchial Epithelial Cells. Front Pharmacol. 2022,13:877125. doi: 10.3389/fphar.2022.877125Read this paper
- Huang YT, Cheng AC, Tang HC, et al. USP7 facilitates SMAD3 autoregulation to repress cancer progression in p53-deficient lung cancer. Cell Death Dis. 2021,12(10):880. doi: 10.1038/s41419-021-04176-8Read this paper
- Traxel S, Lehmann J, Richard S, et al. Support of BCP-ALL-cells by autologous bone marrow Th-cells involves induction of AID expression but not widespread AID off-target mutagenesis. Cancer Immunol Immunother. 2021,70(8):2275-2289. doi: 10.1007/s00262-020-02835-xRead this paper
- Chen HY, Chou HC, Ho YJ, et al. Characterization of TGF-β by Induced Oxidative Stress in Human Trabecular Meshwork Cells. Antioxidants (Basel). 2021,10(1). doi: 10.3390/antiox10010107Read this paper
- Katoh D, Kozuka Y, Noro A, et al. Tenascin-C Induces Phenotypic Changes in Fibroblasts to Myofibroblasts with High Contractility through the Integrin αvβ1/Transforming Growth Factor β/SMAD Signaling Axis in Human Breast Cancer. Am J Pathol. 2020,190(10):2123-2135. doi: 10.1016/j.ajpath.2020.06.008Read this paper
- Shih TW, Lee LJ, Chang HC, et al. An important role of PHRF1 in dendritic architecture and memory formation by modulating TGF-β signaling. Sci Rep. 2020,10(1):10857. doi: 10.1038/s41598-020-67675-2Read this paper
- Ye J, Lei J, Fang Q, et al. miR-4666-3p and miR-329 Synergistically Suppress the Stemness of Colorectal Cancer Cells via Targeting TGF-β/Smad Pathway. Front Oncol. 2019,9:1251. doi: 10.3389/fonc.2019.01251Read this paper
- Thiyagarajan V, Tsai MJ, Weng CF. Antroquinonol Targets FAK-Signaling Pathway Suppressed Cell Migration, Invasion, and Tumor Growth of C6 Glioma. PLoS One. 2015,10(10):e0141285. doi: 10.1371/journal.pone.0141285Read this paper



![IHC-P analysis of rat brain tissue section using GTX00969 SMAD3 (phospho Ser423/Ser425) antibody [GT1207]. Dilution : 1:100](https://www.genetex.com/upload/website/prouct_img/normal/GTX00969/GTX00969_20200327_IHC-P_35_w_23053121_917.webp)