Anti-Acetyl-Histone H4 (Lys16) Mouse mAb
PTM-187
ApplicationsImmunoFluorescence, Western Blot, ChIP Chromatin ImmunoPrecipitation, ImmunoCytoChemistry, ImmunoHistoChemistry Paraffin
Product group Antibodies
ReactivityHuman, Mouse, Rat
Overview
- SupplierPTM BIO
- Product NameAnti-Acetyl-Histone H4 (Lys16) Mouse mAb
- Delivery Days Customer5
- ApplicationsImmunoFluorescence, Western Blot, ChIP Chromatin ImmunoPrecipitation, ImmunoCytoChemistry, ImmunoHistoChemistry Paraffin
- Applications SupplierWB, IHC-P, ICC/IF, ChIP
- Category SupplierAntibody
- CertificationResearch Use Only
- ClonalityMonoclonal
- Clone ID13644
- ConjugateUnconjugated
- HostMouse
- IsotypeIgG
- Protein IDP62805
- Protein NameHistone H4
- Scientific DescriptionHistone post-translational modifications (PTMs) are key mechanisms of epigenetics that modulate chromatin structures, termed as “histone code”. The PTMs on histone including acetylation, methylation, Phosphorylatedrylation and novel acylations directly affect the accessibility of chromatin to transcription factors andother epigenetic regulators, altering genome stability, gene transcription, etc. Histone acetylation occurs primarily at multiple lysine residues on the amino-terminal of core histones, in response to various stimuli and plays vital roles in the regulation of gene expression, DNA damage repair, chromatin dynamics, etc. Mostly, histone H2A is primarily acetylated at Lys5, 9, 15, and 36;H2B is primarily acetylated at Lys5, 12, 15, 16, and 20. Histone H3 is primarily acetylated at Lys4, 9, 14, 18, 23, 27, 56, and 79. Histone H4 is primarily acetylated at Lys5, 8, 12, 16, and 20. Histone acetyltransferases (HATs) and histone deacetylases (HDACs) are major regulating factors
- Shelf life instructionStable for 12 months from date of receipt/reconstitution.
- ReactivityHuman, Mouse, Rat
- Reactivity SupplierHuman, Mouse, Rat
- Reactivity Supplier NoteProtein G purified
- Storage InstructionStore at -20°C. Avoid freeze/thaw cycles.
- UNSPSC12352203
References
- Yongjie Xu, et al. 'Low expression of the intestinal metabolite butyric acid and the corresponding memory pattern regulate HDAC4 to promote apoptosis in rat hippocampal neurons' ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY (2023)Read more
- Hao-Min An, et al. 'MYST family histone acetyltransferases regulate reproductive diapause initiation' INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES (2023)Read more