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Anti-Human ZNF410 Polyclonal Antibody (HP086014)

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Overview
Catalog No.HP086014
Species reactivityHuman
ApplicationsELISA, IHC, WB
Host speciesRabbit
IsotypeIgG
Clonality Polyclonal
Immunogen E. coli - derived recombinant Human ZNF410 (Arg76-Ser191).
Target ZNF410, APA1, Another partner for ARF 1, Zinc finger protein 410, Zinc finger protein APA-1
Purification Purified by antigen affinity column.
Accession Q86VK4
Form Liquid
Storage buffer 0.01M PBS, pH 7.4, 50% Glycerol, 0.05% Proclin 300.

Please refer to the specific buffer information in the hardcopy of datasheet or the lot-specific COA.

Product Usage Information
Application Dilution
ELISA 1:5000-1:20000
IHC 1:50-1:500
WB 1:500-1:2000
Stability and Storage Use a manual defrost freezer and avoid repeated freeze thaw cycles. Store at 2 to 8°C for frequent use. Store at -20 to -80°C for twelve months from the date of receipt.
Background

Zinc finger protein 410 (ZNF410) is a ~52 kDa protein. Transcription factor that binds to the sequence motif 5'-CATCCCATAATA-3', and is specifically required to silence expression of fetal hemoglobin in adult erythroid cells. Prevents expression of fetal hemoglobin genes HBG1 and HBG2 through CHD4: acts as a direct transcriptional activator of CHD4, a central component of the NuRD complex that represses transcription of fetal hemoglobin genes HBG1 and HBG2 in erythroid cells. May also activate transcription of matrix-remodeling genes such as MMP1 during fibroblast senescence. May activate transcription of the gap junction gene GJC1, perhaps in response to increasing glucose. However, recent studies suggest that ZNF410 is dedicated to regulate expression of a single gene: CHD4.

1. Lan, X. et al. (2021) Molecular cell 81, 239-254.e8. PMID: 33301730
2. Vinjamur, DS. et al. (2021) Nature genetics 53, 719-728. PMID: 33859416
3. Benanti, JA. et al. (2002) Molecular and cellular biology 22, 7385-97. PMID: 12370286
4. Chen, Y. et al. (2018) Journal of cellular physiology 234, 606-618. PMID: 30078215
Note For research use only.
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Formula
Mass (g) = Concentration (mol/L) × Volume (L) × MW (g/mol)
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