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TET1 Monoclonal Antibody (CAB20833)

SKU:
CAB20833
Product Type:
Antibody
Antibody Type:
Secondary Antibody
Host Species:
Goat
Isotype:
Alexa Fluor 594 conjugated IgG
  • Immunohistochemistry of paraffin-embedded human testis using TET1 Rabbit mAb at dilution of 1:1600 (40x lens). Perform high pressure antigen retrieval with 10 mM citrate buffer pH 6. 0 before commencing with IHC staining protocol.
  • Immunohistochemistry of paraffin-embedded mouse testis using TET1 Rabbit mAb at dilution of 1:1600 (40x lens). Perform high pressure antigen retrieval with 10 mM citrate buffer pH 6. 0 before commencing with IHC staining protocol.
  • Western blot analysis of extracts of ESCS cells, using TET1 antibody at 1:1000 dilution. Secondary antibody: HRP Goat Anti-Rabbit IgG (H+L) at 1:10000 dilution. Lysates/proteins: 25ug per lane. Blocking buffer: 3% nonfat dry milk in TBST. Detection: ECL Basic Kit. Exposure time: 90s.
€179 - €469
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Description

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TET1 Monoclonal Antibody (CAB20833)

The Anti-TET1 Antibody (CAB20833) is a high-quality research tool designed for the detection and analysis of TET1, a key enzyme involved in DNA demethylation processes. This polyclonal antibody is produced in rabbits and exhibits strong reactivity towards human samples, making it suitable for a variety of applications including Western blotting.TET1, also known as ten-eleven translocation 1, plays a vital role in DNA demethylation by converting 5-methylcytosine (5mC) to 5-hydroxymethylcytosine (5hmC). Dysregulation of TET1 has been implicated in various diseases, including cancer and neurological disorders.

Therefore, studying the expression and activity of TET1 using this antibody is essential for research in epigenetics, cancer biology, and gene regulation.With its specificity and sensitivity, the Anti-TET1 Antibody (CAB20833) is a valuable tool for researchers seeking to explore the functions and mechanisms of TET1 in cellular processes and disease pathways. By enabling the detection and analysis of TET1 protein expression, this antibody opens up new possibilities for advancing our understanding of epigenetic regulation and its impact on human health.