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Acetyl-Histone H3-K9 Rabbit Polyclonal Antibody (CAB7255)

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SKU:
CAB7255
Product Type:
Antibody
Applications:
WB
IHC
IF
IP
ChIP
Modification Type:
Acetylation
Reactivity:
Human
Mouse
Rat
Host Species:
Rabbit
Isotype:
IgG
Antibody Type:
Polyclonal Antibody
Research Area:
Epigenetics and Nuclear Signaling
  • Epigenetics and Nuclear Signaling Antibodies 4 Anti-Acetyl-Histone H3-K9 Antibody CAB7255
  • Epigenetics and Nuclear Signaling Antibodies 4 Anti-Acetyl-Histone H3-K9 Antibody CAB7255
  • Epigenetics and Nuclear Signaling Antibodies 4 Anti-Acetyl-Histone H3-K9 Antibody CAB7255
  • Epigenetics and Nuclear Signaling Antibodies 4 Anti-Acetyl-Histone H3-K9 Antibody CAB7255
  • Epigenetics and Nuclear Signaling Antibodies 4 Anti-Acetyl-Histone H3-K9 Antibody CAB7255
€139 - €419

Description

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Acetyl-Histone H3-K9 Rabbit Polyclonal Antibody (CAB7255)

The Acetyl-Histone H3 (K9) Polyclonal Antibody (CAB7255) is a valuable tool for researchers studying modifications of histone proteins in epigenetics. Histone H3 lysine 9 acetylation plays a crucial role in gene activation and chromatin remodeling, making this antibody essential for studying gene expression regulation.Raised in rabbits, this antibody is highly specific to acetyl-histone H3 (K9) and is validated for use in various applications, such as Western blotting and chromatin immunoprecipitation (ChIP). It allows for precise detection and analysis of acetyl-histone H3 (K9) levels, providing valuable insights into epigenetic mechanisms in different cell types and experimental conditions.

Acetyl-histone H3 (K9) has been implicated in a wide range of biological processes, including cell differentiation, development, and disease progression. Therefore, this antibody is a powerful tool for researchers investigating epigenetic regulation in cancer, stem cell biology, and other fields where chromatin modifications play a key role.By enabling researchers to study the dynamics of acetyl-histone H3 (K9) in a specific and sensitive manner, this antibody contributes to advancing our understanding of epigenetic mechanisms and their impact on cellular function and disease development. Discover the potential of epigenetics with the Acetyl-Histone H3 (K9) Polyclonal Antibody (CAB725

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