How to order this kit:


Step 1: Choose filter plate assay

Product Name Catalog # Price   Qty
TF Filter Plate Assay without Probe (Use with PP-xxxx) FA-0010 $484
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Step 2: Choose probe of interest

Product Name Catalog # Price   Qty
NFκB PP-0001 $153
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HIF PP-0002 $153
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ER PP-0003 $153
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AP1 PP-0004 $153
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Stat3 PP-0005 $153
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AP2 PP-0007 $153
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AR PP-0008 $153
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ATF2 Probe PP-0009 $153
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Brn-3 PP-0010 $153
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C/EBP Probe PP-0011 $153
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CBF PP-0012 $153
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CAR PP-0013 $153
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CDP PP-0014 $153
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CREB PP-0015 $153
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E2F-1 PP-0016 $153
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EGR PP-0017 $153
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Ets PP-0018 $153
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FAST-1(FOXH1) PP-0019 $153
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GAS/ISRE PP-0020 $153
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GATA PP-0021 $153
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GR/PR PP-0022 $153
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HNF4 PP-0023 $153
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IRF PP-0024 $153
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MEF2 PP-0025 $153
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Myb PP-0026 $153
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Myc-Max PP-0027 $153
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NF-1 PP-0028 $153
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NFAT PP-0029 $153
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NF-E2 PP-0030 $153
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OCT4 PP-0031 $153
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p53 PP-0032 $153
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Pax-5 PP-0033 $153
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Pbx1 PP-0034 $153
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Pit PP-0035 $153
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PPAR PP-0036 $153
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PXR PP-0037 $153
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SMAD (MADH) PP-0038 $153
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Sp1 PP-0039 $153
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SATB1 PP-0041 $153
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Stat1 PP-0042 $153
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Stat4 PP-0043 $153
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Stat5 PP-0044 $153
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Stat6 PP-0045 $153
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TCF/LEF PP-0046 $153
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TFIID PP-0047 $153
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TR PP-0048 $153
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RB PP-0081 $153
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AP3 PP-0049 $153
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RNUX PP-0082 $153
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ROR (RZR) PP-0083 $153
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RXR PP-0084 $153
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SF1 PP-0085 $153
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AP4 PP-0050 $153
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SMUC PP-0086 $153
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Snail PP-0087 $153
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SOX2 PP-0088 $153
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SOX9 PP-0089 $153
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COUP PP-0051 $153
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SOX18 PP-0090 $153
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SRY PP-0091 $153
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TFE3 PP-0092 $153
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USF-1 PP-0093 $153
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ELK PP-0052 $153
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FOXA1 PP-0053 $153
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FoxC1 PP-0054 $153
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FOXD3 PP-0055 $153
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FOXG1 PP-0056 $153
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FOXO1 PP-0057 $153
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FREAC-2 (FOXF2) PP-0058 $153
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Gfi-1 PP-0059 $153
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Gli-1 PP-0060 $153
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HEN (NSCL-1) PP-0061 $153
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HNF-1 PP-0062 $153
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HOX4C PP-0063 $153
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HoxA-5 PP-0064 $153
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HSF PP-0065 $153
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KLF4 PP-0066 $153
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MyoD PP-0067 $153
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MZF PP-0068 $153
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Nkx2-5 PP-0069 $153
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Nkx3-2 PP-0070 $153
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NRF1 PP-0071 $153
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NRF2 (ARE) PP-0072 $153
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OCT1 PP-0073 $153
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Pax-2 PP-0074 $153
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Pax-3 PP-0075 $153
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Pax-8 PP-0076 $153
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PIT1 PP-0077 $153
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PLAG1 PP-0078 $153
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Prox1 PP-0080 $153
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Description(s):
Transcription factors (TFs) are a group of cellular proteins that play essential roles in regulating gene expression. They act as a sensor to monitor cellular change and convert the signals into altered gene expression. A specific TF is often regulated by multiple upstream proteins. Monitoring the activation of a TF is critical to uncovering the mechanism of signal pathways and cellular regulations.

Signosis allows you to select up to 8 TFs of your interest to create a customized filter plate assay to better suit your needs. To create a customized filter plate assay, you simply order the core kit and choose your own combination of TF probes of interest!


To perform the assay, a TF Filter Assay Kit and a probe are needed.


Principle

In Signosis' TF filter plate assays, a specific biotin-labeled TF DNA binding sequence is mixed with nuclear extracts to allow formation of TF-DNA complexes. A filter plate is used to retain bound DNA probe and remove free probe. The bound pre-labeled DNA probe is then eluted from the filter and collected for quantitative analysis through DNA plate hybridization. The captured DNA probe is further detected with streptavidin-HRP. Luminescence is reported as relative light units (RLUs) on a microplate luminometer.


Data

Analysis of HeLa cells that were treated with TNFα, IL2, OSM, and IL4 with controls. The nuclear extracts were prepared and subjected to  Filter profiling plate array testing for transcription factors STAT1, STAT3, STAT4, STAT5, and STAT6. 

Literature

View user manual

Citations

Citations

1.Targeted Inhibition of Calpain Reduces Myocardial Hypertrophy and Fibrosis in Mouse Models of Type 1 Diabetes. Li Y, Ma J, Zhu H, Singh M, Hill D, Greer PA, Arnold JM, Abel ED, Peng T. Diabetes. 2011 Nov;60(11):2985-94.
 
2.Melatonin MT1 receptor-induced transcriptional up-regulation of p27Kip1 in prostate cancer antiproliferation is mediated via inhibition of constitutively active nuclear factor kappa B (NF-κB): potential implications on prostate cancer chemoprevention and therapy. Shiu SY, Leung WY, Tam CW, Liu VW, Yao KM. J Pineal Res. 2012 Jun 20. doi: 10.1111/j.1600-079X.2012.01026.x. [Epub ahead of print]
 
3.Deficiency of Capn4 Gene Inhibits Nuclear Factor-κB (NF-κB) Protein Signaling/Inflammation and Reduces Remodeling after Myocardial Infarction. Ma J, Wei M, Wang Q, Li J, Wang H, Liu W, Lacefield JC, Greer PA, Karmazyn M, Fan GC, Peng T. J Biol Chem. 2012 Aug 10;287(33):27480-9.
 
4.Anti-inflammatory salicylate treatment alters the metabolic adaptations to lactation in dairy cattleAmerican Journal of Physiology - Regulatory, Integrative and Comparative Physiology 2013.July 305(2) R110
 
5.Involvement of a chromatin modifier in response to mono-(2-ethylhexyl) phthalate (MEHP)-induced Sertoli cell injury: Probably an indirect action via the regulation of NFκB/FasL circuitry. Chen S, Dong Y, Xu C, Jiang L, Chen Y, Jiang C, Hou W, Li W. Biochem Biophys Res Commun.  2013 Oct 8. pii: S0006-291X(13)01640-9.
 
6.Immunoglobulin light chains activate nuclear factor-B in renal epithelial cells through a Src-dependent mechanism. Ying WZ, Wang PX, Aaron KJ, Basnayake K, Sanders PW. Blood. 2011 Jan 27;117(4):1301-7.
 
7. In vivo selective imaging and inhibition of leukemia stem-like cells using the fluorescent carbocyanine derivative, DiOC5 (3). B Zhang, Y Shimada, J Kuroyanagi, M Ariyoshi . Biomaterials, 2015. Volume 52, June 2015, Pages 14–25 
 
8. Repression of a chromatin modifier aggravates lipopolysaccharide-induced acute lung injury in mouseJia-kuan Chena, 1, Wen-chen Wanga, 1, Li Zangb, Jie Zhaoc, Wei Lic, Tao Jianga, ,Biochemical and Biophysical , 2016.     doi:10.1016/j.bbrc.2016.02.043
 
9. Repression of a chromatin modifier aggravates lipopolysaccharide-induced acute lung injury in mouse
J Chen, W Wang, L Zang, J Zhao, W Li, T Jiang .  Biochemical and Biophysical Research Communications 2016.  doi:10.1016/j.bbrc.2016.02.043

10. Bmi1 inhibition enhances the sensitivity of pancreatic cancer cells to gemcitabine
Tao Yin, Zhengle Zhang, Bin Cao, Qingke Duan, Pengfei Shi, Hengqiang Zhao, Soriba Naby Camara, Qiang Shen, Chunyou Wang
Oncotarget. 2016 May 11. doi: 10.18632/oncotarget.9293

11. Protective effects of tyrosol against LPS-induced acute lung injury via inhibiting NF-κB and AP-1 activation and activating the HO-1/Nrf2 Pathways. Wen-chen Wanga, Yan-min Xiaa , Bo Yangb, Xiang-ni Suc , Jia-kuan Chena, Wei Li, Tao Jiang. Biological & Pharmaceutical Bulletin Biological and Pharmaceutical Bulletin 2017 DOI:10.1248/bpb.b16-00756

12. Adipose Tissue-specific Inhibition of Hypoxia-inducible Factor 1 Induces Obesity and Glucose Intolerance by Impeding Energy Expenditure in Mice. Zhang X, Lam KS, Ye H, Chung SK, Zhou M, Wang Y, Xu A. J Biol Chem. 2010 Oct 22;285(43):32869-77.
 
13. HIF-2α Suppresses p53 to Enhance the Stemness and Regenerative Potential of Human Embryonic Stem Cells. Das B, Bayat-Mokhtari R, Tsui M, Lotfi S, Tsuchida R, Felsher DW, Yeger H. Stem Cells. 2012 Aug;30(8):1685-1695.

14. Protective effects of tyrosol against LPS-induced acute lung injury via inhibiting NF-κB and AP-1 activation and activating the HO-1/Nrf2 Pathways. Wen-chen Wanga, Yan-min Xiaa , Bo Yangb, Xiang-ni Suc , Jia-kuan Chena, Wei Li, Tao Jiang. Biological & Pharmaceutical Bulletin Biological and Pharmaceutical Bulletin 2017 DOI:10.1248/bpb.b16-00756

15. Upregulation of miRNA-155 expression by OxLDL in dendritic cells involves JAK1/2 kinase and transcription factors YY1 and MYB. H Yan, S Wang, Z Li, W Zhao, Z Wang, Z Sun, Y Pan. International Journal of Molecular Medicine , Print ISSN: 1107-3756. Online ISSN:1791-244X, Published online on: Friday, March 11, 2016

16. Sa1684 Common Food Additive Carrageenan Stimulates Wnt/β-Catenin Signaling Pathway in Colonic Epithelium by Inhibition of Nucleoredoxin Reduction.L Feferman, JK Tobacman. Nutrition and Cancer, 1–11, 2014, ISSN: 0163-5581 print / 1532-7914 online. DOI: 10.1080/01635581.2014.852228

17. CRP promotes MMP-10 expression via c-Raf/MEK/ERK and JAK1/ERK pathways in cardiomyocytes.Cui C, Shi Q, Zhang X, Liu X, Bai Y, Li J, Liu S, Hu S, Wei Y. Cell Signal. 2012 Mar;24(3):810-8.

18. Chondroitin sulfatases differentially regulate Wnt signaling in prostate stem cells through effects on SHP2, phospho-ERK1/2, and Dickkopf Wnt signaling pathway inhibitor (DKK3). Bhattacharyya, Sumit, et al. Oncotarget, 2017, doi:10.18632/oncotarget.22152.