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Anti-UFM1 Polyclonal Antibody (HB333014)

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Vista general
Número de catálogoHB333014
Descripción
Anti-UFM1 Polyclonal Antibody (HB333014) is a rabbit polyclonal antibody detecting Ubiquitin-fold modifier 1; UFM1; C13orf20; BM-002 in ELISA, IHC, WB. Suitable for Human, Mouse, Bovine, Rat, and Zebrafish.
Highlights
  • ●Affinity Purified — Minimal background and high purity for reliable results.
  • ●Multi-Application — Validated across multiple applications.
  • ●Multi-Species — Cross-reactive for translational research.
Reactividad de especiesHuman, Mouse, Rat
AplicacionesELISA, IHC, WB
Especie huéspedRabbit
ClonalidadPolyclonal
IsotipoIgG
Inmunógeno E. coli - derived recombinant human UFM1 (Ser2-Gly83).
Objetivo Ubiquitin-fold modifier 1; UFM1; C13orf20; BM-002
Nivel de endotoxinas Please contact with the lab for this information.
Purificación Purified by antigen affinity column.
Número de acceso P61960, P61961, Q2KJG2, Q5BJP3, Q803Y4, Q5ZMK7, Q5RJW4, B5LVL2, P34661, A8DYH2, Q9CA23
Forma Liquid
Buffer de almacenamiento 0.01M PBS, pH 7.4, 50% Glycerol, 0.05% Proclin 300.

Consulte la información específica del buffer en la copia impresa del datasheet o en el COA específico del lote.

Información de uso del producto
Aplicación Dilución
ELISA 1:5000-1:20000
IHC 1:50-1:500
WB 1:500-1:2000
Estabilidad y almacenamiento 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.
Fondo

Ubiquitin-fold modifier 1 (UFM1) is a ~9 kDa protein. Ubiquitin-like modifier which can be covalently attached via an isopeptide bond to lysine residues of substrate proteins as a monomer or a lysine-linked polymer. The so-called ufmylation, requires the UFM1-activating E1 enzyme UBA5, the UFM1-conjugating E2 enzyme UFC1, and the UFM1-ligase E3 enzyme UFL1. Ufmylation is involved in various processes, such as ribosome recycling, response to DNA damage, transcription or reticulophagy (also called ER-phagy) induced in response to endoplasmic reticulum stress.

1. Komatsu, M. et al. (2004) The EMBO journal 23, 1977-86. PMID: 15071506
2. Tatsumi, K. et al. (2010) The Journal of biological chemistry 285, 5417-27. PMID: 20018847
3. Oweis, W. et al. (2016) Cell reports 16, 3113-3120. PMID: 27653677
4. Nahorski, MS. et al. (2018) Brain : a journal of neurology 141, 1934-1945. PMID: 29868776
5. Walczak, CP. et al. (2019) Proceedings of the National Academy of Sciences of the United States of America 116, 1299-1308. PMID: 30626644
6. He, C. et al. (2024) Molecular cell 84, 1120-1138.e8. PMID: 38377992
7. DaRosa, PA. et al. (2024) Nature 627, 445-452. PMID: 38383785
8. Yoo, HM. et al. (2014) Molecular cell 56, 261-274. PMID: 25219498
9. Liang, JR. et al. (2020) Cell 180, 1160-1177.e20. PMID: 32160526
Nota For research use only
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Formula
Mass (g) = Concentration (mol/L) × Volume (L) × MW (g/mol)
Enter any 2 of Mass, Concentration, Volume + Molecular Weight to solve for the unknown.
Mass
=
Concentration
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Volume
Molecular Weight *
g/mol
Formula
C₁ × V₁ = C₂ × V₂
Enter any 3 of the 4 values to solve for the unknown.
Stock Solution
C₁ (Stock Conc.)
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V₁ (Stock Vol.)
=
Working Solution
C₂ (Working Conc.)
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V₂ (Working Vol.)
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