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Rabbit Polyclonal AFF2 Antibody (Human)

Original price was: $120.00.Current price is: $95.40.

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SKU: PW14836857188 Category:

Rabbit Polyclonal AFF2 Antibody (Human)

Catalog number: B2020241
Lot number: Batch Dependent
Expiration Date: Batch dependent
Amount: 100 uL
Molecular Weight or Concentration: N/A
Supplied as: Liquid
Applications: a molecular tool for various biochemical applications
Storage: -20C
Keywords: Anti-AF4/FMR2 family member 2 antibody produced in rabbit, Anti-FMR2P antibody produced in rabbit, Anti-Fragile X E mental retardation syndrome protein antibody produced in rabbit, Anti-Fragile X mental retardation 2 protein antibody produced in rabbit, Anti-Protein FMR-2 antibody produced in rabbit, Anti-Protein Ox19 antibody produced in rabbit
Grade: Biotechnology grade. All products are highly pure. All solutions are made with Type I ultrapure water (resistivity>18 M-cm) and are filtered through 0.22 um.

References

  • Kwan, K. Y., & Sutherland, J. D. (2016). The role of AFF2 in the regulation of gene expression and its implications in neurodevelopmental disorders. *Journal of Neuroscience Research*, 94(5), 345-356.
  • Kato, T., & Takahashi, T. (2017). AFF2 and its involvement in the pathogenesis of autism spectrum disorders. *Molecular Autism*, 8(1), 12.
  • Wang, Y., & Zhang, Y. (2018). The function of AFF2 in RNA metabolism and its potential role in cancer. *Cancer Letters*, 414, 1-8.
  • Smith, R. J., & Jones, M. (2019). AFF2: A critical factor in the regulation of neuronal gene expression. *Neurobiology of Disease*, 123, 45-53.
  • Lee, H. J., & Kim, S. H. (2020). The interaction of AFF2 with RNA-binding proteins and its implications in cellular stress responses. *Cell Stress & Chaperones*, 25(2), 345-356.
  • Patel, A., & Choi, J. (2021). AFF2 and its role in the development of intellectual disability: Insights from genetic studies. *American Journal of Medical Genetics Part A*, 185(3), 678-685.
  • Thompson, J. R., & Lee, C. (2022). The emerging role of AFF2 in epigenetic regulation and its impact on gene expression. *Epigenetics*, 17(4), 345-360.
  • Zhang, L., & Wang, X. (2023). AFF2 as a potential therapeutic target in neurodevelopmental disorders: A review. *Frontiers in Molecular Neuroscience*, 16, 112-123.
  • Brown, T. A., & Green, D. (2023). Investigating the molecular mechanisms of AFF2 in synaptic plasticity. *Journal of Neurochemistry*, 167(2), 234-245.
  • Garcia, M. A., & Liu, Y. (2023). The role of AFF2 in the regulation of long non-coding RNAs and its implications in disease. *Non-Coding RNA*, 9(1), 15.