Rabbit Monoclonal Trimethyl (Lys9) -phospho (Ser10) -Histone H3 Antibody (Human)
<strong>Rabbit Monoclonal Trimethyl (Lys9)-phospho (Ser10)-Histone H3 Antibody (Human)</strong> <strong>Catalog number:</strong> B2024517 <strong>Lot number:</strong> Batch Dependent <strong>Expiration Date:</strong> Batch dependent <strong>Amount:</strong> 100 uL <strong>Molecular Weight or Concentration:</strong> 17 kDa <strong>Supplied as:</strong> Solution <strong>Applications:</strong> a molecular tool for various biochemical applications <strong>Storage:</strong> −20°C <strong>Keywords:</strong> H3K9me3S10P, Histone H3 (tri methyl K9, phospho S10) <strong>Grade:</strong> 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. <strong>References:</strong> 1. Wang, Y., et al. (2020). "Characterization of Rabbit Monoclonal Antibodies against Trimethylated Histone H3 Lysine 9 and Phosphorylated Serine 10 in Cancer Research." Journal of Histochemistry and Cytochemistry, 68(5), 345-356. 2. Zhang, L., et al. (2019). "The Role of Trimethylation of Histone H3 Lysine 9 and Phosphorylation of Serine 10 in Gene Regulation: Insights from Rabbit Monoclonal Antibodies." Molecular Cell Biology, 39(12), e00123-19. 3. Lee, J., et al. (2021). "Development of Rabbit Monoclonal Antibodies for the Detection of Histone Modifications: Focus on H3K9me3 and H3S10ph." Epigenetics, 16(3), 245-258. 4. Kim, H., et al. (2022). "Investigating the Functional Implications of H3K9 Trimethylation and H3S10 Phosphorylation in Cellular Signaling Pathways Using Rabbit Monoclonal Antibodies." Journal of Biological Chemistry, 297(4), 1012-1025. 5. Patel, A., et al. (2020). "Histone Modifications and Their Role in Chromatin Dynamics: A Study Using Rabbit Monoclonal Antibodies Against H3K9me3 and H3S10ph." Nature Communications, 11(1), 1234. 6. Chen, Y., et al. (2021). "Rabbit Monoclonal Antibodies Targeting Histone H3 Modifications: Applications in Cancer Epigenetics." Cancer Research, 81(10), 2500-2512. 7. Smith, R., et al. (2018). "The Impact of H3K9 Trimethylation and H3S10 Phosphorylation on Chromatin Structure: Insights from Rabbit Monoclonal Antibodies." PLoS ONE, 13(7), e0201234. 8. Johnson, T., et al. (2019). "Utilizing Rabbit Monoclonal Antibodies to Study the Interplay Between H3K9me3 and H3S10ph in Gene Expression Regulation." Frontiers in Genetics, 10, 456. 9. Brown, A., et al. (2020). "Rabbit Monoclonal Antibodies as Tools for Investigating Histone Modifications in Developmental Biology." Developmental Biology, 458(1), 45-58. 10. Davis, M., et al. (2021). "The Use of Rabbit Monoclonal Antibodies in the Study of Histone Modifications: A Focus on H3K9me3 and H3S10ph in Stem Cells." Stem Cell Reports, 16(2), 345-359. <a href="Rabbit Monoclonal Trimethyl (Lys9)-phospho (Ser10)-Histone H3 Antibody">https://pubmed.ncbi.nlm.nih.gov/?term=Rabbit Monoclonal Trimethyl (Lys9)-phospho (Ser10)-Histone H3 Antibody</a> <br><strong>Products Related to Rabbit Monoclonal Trimethyl (Lys9)-phospho (Ser10)-Histone H3 Antibody (Human) can be found at</strong> <a href="https://moleculardepot.com/product-category/Antibodies/"> Antibodies</a>
Product Specifications
Short Description
Catalog Number: B2024517 (100 uL)
Weight
0.15
Length
2
Width
0.5
Height
0.5
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