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ZNF177 Rabbit Polyclonal Antibody (CAB14802)

SKU:
CAB14802
Product Type:
Antibody
Reactivity:
Human
Mouse
Rat
Host Species:
Rabbit
Isotype:
IgG
Antibody Type:
Polyclonal Antibody
Research Area:
Epigenetics and Nuclear Signaling
  • Epigenetics and Nuclear Signaling Antibodies 2 Anti-ZNF177 Antibody CAB14802
  • Epigenetics and Nuclear Signaling Antibodies 2 Anti-ZNF177 Antibody CAB14802
  • Epigenetics and Nuclear Signaling Antibodies 2 Anti-ZNF177 Antibody CAB14802
  • Epigenetics and Nuclear Signaling Antibodies 2 Anti-ZNF177 Antibody CAB14802
  • Epigenetics and Nuclear Signaling Antibodies 2 Anti-ZNF177 Antibody CAB14802
$167 - $503
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Description

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ZNF177 Rabbit Polyclonal Antibody (CAB14802)

The ZNF177 Polyclonal Antibody (CAB14802) is a valuable tool for researchers studying the zinc finger protein ZNF177, which is involved in various regulatory processes within the cell. This antibody, produced in rabbits, exhibits high reactivity with human samples and has been validated for use in Western blot applications. By binding specifically to the ZNF177 protein, this antibody enables precise detection and analysis in a variety of cell types, making it an ideal choice for studies in molecular biology and gene regulation.ZNF177, a transcription factor containing zinc finger domains, plays a crucial role in regulating gene expression and controlling cellular functions. Its involvement in processes such as cell growth, differentiation, and apoptosis highlights its significance in various biological pathways.

Research into the functions and mechanisms of ZNF177 can provide valuable insights into developmental disorders, cancer biology, and neurological diseases.By utilizing the ZNF177 Polyclonal Antibody (CAB14802), researchers can delve deeper into the intricate workings of this important protein and further our understanding of its role in physiological and pathological conditions. Moreover, the antibody's high specificity and sensitivity make it a reliable tool for exploring the potential therapeutic applications of targeting ZNF177 in disease treatment strategies.