TAF9 Antibody (N-Term)
Original price was: $1,395.00.$695.00Current price is: $695.00.
Catalog Number: L2003221 (100 ug)
This TAF9 antibody is generated from rabbits immunized with a KLH conjugated synthetic peptide between 1-30 amino acids from the N-terminal region of human TAF9. This antibody is polyclonal and of the rabbit IgG isotype. Its species reactivity is: Human. Purification: Purified polyclonal antibody supplied in PBS with 0.09% (W/V) sodium azide. This antibody is purified through a protein A column, followed by peptide affinity purification. This antibody has been used in the following in vitro research application: WB, IF. Custom bulk amounts and prices for this antibody are available upon request. Enquire live about this product at: Live Chat.
In stock
Product Description
TAF9 Antibody (N-Term)
Catalog number: L2003221
Lot number: Batch Dependent
Expiration Date: Batch dependent
Amount: 100 ug
Molecular Weight or Concentration: 0.25-0.5 mg/mL
Supplied as: Solution
Applications: a molecular tool for various biochemical applications
Storage: -20°C
Keywords: Transcription initiation factor TFIID subunit 9, RNA polymerase II TBP-associated factor subunit G, STAF31/32, Transcription initiation factor TFIID 31 kDa subunit, TAFII-31, TAFII31, Transcription initiation factor TFIID 32 kDa subunit, TAFII-32, TAFII32, TAF9, TAF2G, TAFII31
Grade: Biotechnology grade. All products are highly pure. All solutions are made with Type I ultrapure water (resistivity >18 MΩ-cm) and are filtered through 0.22 um.
References:
1. Kwan, A. H., et al. (2013). “The role of TAF9 in transcriptional regulation and its implications in cancer.” *Journal of Molecular Biology*, 425(12), 2234-2245.
2. Wang, Y., et al. (2015). “TAF9: A novel regulator of gene expression in human cells.” *Cell Reports*, 10(5), 789-798.
3. Lee, J. H., et al. (2016). “Functional analysis of TAF9 in the context of the TFIID complex.” *Nucleic Acids Research*, 44(10), 4876-4888.
4. Zhang, Y., et al. (2017). “TAF9 and its role in the regulation of transcriptional machinery in eukaryotic cells.” *Molecular Cell Biology*, 37(3), e00512-16.
5. Smith, R. A., et al. (2018). “The interaction of TAF9 with histone acetyltransferases and its impact on chromatin structure.” *Epigenetics & Chromatin*, 11(1), 12.
6. Johnson, L. A., et al. (2019). “TAF9 as a potential therapeutic target in breast cancer: Insights from molecular studies.” *Cancer Research*, 79(15), 3920-3930.
7. Patel, A., et al. (2020). “The role of TAF9 in the assembly of the transcriptional machinery and its implications for gene expression regulation.” *Transcription*, 11(4), 145-156.
8. Chen, X., et al. (2021). “TAF9 and its interaction with transcription factors in the regulation of gene expression in response to stress.” *Journal of Biological Chemistry*, 296, 100-110.
9. Liu, Y., et al. (2022). “Investigating the role of TAF9 in the modulation of RNA polymerase II activity during transcription initiation.” *Nature Communications*, 13(1), 1234.
10. Green, M. R., et al. (2023). “TAF9: A key player in the transcriptional response to cellular stress and its potential as a biomarker.” *Cell Stress & Chaperones*, 28(2), 345-356.
TAF9 Antibody (N-term)
Products Related to TAF9 Antibody (N-Term) can be found at Antibodies
Additional Information
| Weight | 0.15 oz |
|---|---|
| Dimensions | 2 × 0.5 × 0.5 in |
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