U-Blot® Pan-Acetyllysine Mouse mAb

$999.00

SKU: WT9180-300
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Product details

Background:
Acetyllysine (abbreviated as Kac) is a classic and widespread post-translational modification of lysine acetylation. This modification covalently adds an acetyl group to the side-chain amino group of lysine residues, altering the charge and structure of proteins to regulate their functions. Lysine acetylation is an important epigenetic marker on histones, involved in chromatin remodeling and gene transcription regulation. It also widely exists in non-histone proteins such as metabolic enzymes, signaling proteins, and transcription factors, playing essential roles in cellular metabolism, signal transduction, cell cycle progression, and DNA repair. Dysregulation of lysine acetylation is closely associated with the development of cancer, metabolic diseases, neurodegenerative diseases, and other disorders.

Specifications

TargetAcetyllysine
ReactivitySpecies Independent
ApplicationELISA,WB,IP,IHC,IF
MW(Calculated)Multiple
MW(Observed)Multiple
Host SpeciesMouse
IsotypeIgGa2
ConjugateUnconjugated
ModificationLysine acetylation
Modified siteLys(K)
Recommended dilution ratioWB 0.1-0.5 µg/mL; IF 1-5 µg/mL; IP approximately 10µg/mg crude protein
Composition250ug/mL antibody stored in PBS, 50% glycerol
Purification processThe antibody was purified on acetyl-lysine agarose
Purity
StorageProduct is stable for several weeks at 4°C. For extended storage, store product at –20ºC.
StabilityStable for 12 months from date of receipt / reconstitution.
ClonalMonoclonal
Clone Number
ImmunogenAcetylated KLH conjugates
Sequence
Specificity
Gene name
Protein Name
Alternative nameKac
Organism-1
GeneID-1
SwissProt-1
Organism-2
GeneID-2
SwissProt-2
Organism-3
GeneID-3
SwissProt-3
Organism-4
GeneID-4
SwissProt-4
BackgroundAcetyllysine (abbreviated as Kac) is a classic and widespread post-translational modification of lysine acetylation. This modification covalently adds an acetyl group to the side-chain amino group of lysine residues, altering the charge and structure of proteins to regulate their functions. Lysine acetylation is an important epigenetic marker on histones, involved in chromatin remodeling and gene transcription regulation. It also widely exists in non-histone proteins such as metabolic enzymes, signaling proteins, and transcription factors, playing essential roles in cellular metabolism, signal transduction, cell cycle progression, and DNA repair. Dysregulation of lysine acetylation is closely associated with the development of cancer, metabolic diseases, neurodegenerative diseases, and other disorders.
Cellular Localization
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