View primary antibody

Basic data

PIDprimary-0053
EPIC PIDhttps://hdl.handle.net/21.11124/primary-0053
Research groupRG Fischer
Quality (mean)no score (0.00)
Sharing levelPublic

Antibody data

Antigen symbolH3K4me3
Antibody Registry ID(s)AB_306649
NameAnti-Histone H3 (tri methyl K4) antibody
Alternative name
Lab ID
Tag / Fluorophore
Raised inRabbit
Reacts withCow, Human
Clone
IsotypeIgG
Clonalitypolyclonal
Demaskingunknown
AntigenSynthetic peptide within Human Histone H3 aa 1-100 (tri methyl K4) conjugated to keyhole limpet haemocyanin.
Crafted Bycompany
Company / ManufacturerAbcam
Catalog no.ab8580
Lot no.
DescriptionPepArr: Use a concentration of 0.2 - 0.02 µg/ml. Slight cross reactivity is observed with the Histone H3 - di methyl K4 modification. Optimisation is recommended to avoid array signal saturation. ChIP: Use 2 µg for 25 µg of chromatin. We recommend GAPDH positive control ChIP primer pair ab267832 as positive control. WB: Use a concentration of 1 µg/ml. Detects a band of approximately 17 kDa (predicted molecular weight: 15 kDa). IHC-P: Use at an assay dependent concentration. ICC/IF: Use a concentration of 1 µg/ml. 1/100 - 1/5000
LocalizationNucleus. Chromosome.
Storage instructionShipped at 4°C. Store at +4°C short term (1-2 weeks). Upon delivery aliquot. Store at -20°C or -80°C. Avoid freeze / thaw cycle.
Receipt date2021-01-01 00:00:00
Preparation date2021-01-20 00:00:00
Created byKlauenberg, Vanessa
Last modifiedKlauenberg, Vanessa

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Linked publications


Epigenetic gene-expression links heart failure to memory impairment
Islam R, Lbik D, Sakib S, Hofmann RM, Berulava T, Mausbach MJ, Cha J, Vakhtang E, Schiffmann C, Zieseniss A, Katschinski DM, Sananbenesi F, Toischer K, Fischer A
bioRxiv 2020 : 10.1101/2020.01.22.915637

Epigenetic gene expression links heart failure to memory impairment
Islam MR, Lbik D, Sakib MS, Maximilian Hofmann R, Berulava T, Jiménez Mausbach M, Cha J, Goldberg M, Vakhtang E, Schiffmann C, Zieseniss A, Katschinski DM, Sananbenesi F, Toischer K, Fischer A
EMBO Mol Med 2021 : 10.15252/emmm.201911900

SETD1B controls cognitive function via cell type specific regulation of neuronal identity genes
Michurina A, Sakib S, Kerimoglu C, Krüger DM, Kaurani L, Islam R, Centeno TP, Cha J, Xu X, Zeisberg EM, Kranz A, Stewart FA, Fischer A
bioRxiv 2020 : 10.1101/2020.08.07.240853

Postnatal expression of the lysine methyltransferase SETD1B is essential for learning and the regulation of neuron-enriched genes
Michurina A, Sakib MS, Kerimoglu C, Krüger DM, Kaurani L, Islam MR, Joshi PD, Schröder S, Centeno TP, Zhou J, Pradhan R, Cha J, Xu X, Eichele G, Zeisberg EM, Kranz A, Stewart AF, Fischer A
EMBO J 2021 : 10.15252/embj.2020106459

Aging-Associated Changes in Cognition, Expression and Epigenetic Regulation of Chondroitin 6-Sulfotransferase Chst3
Baidoe-Ansah D, Sakib S, Jia S, Mirzapourdelavar H, Strackeljan L, Fischer A, Aleshin S, Kaushik R, Dityatev A
Cells 2022 : 10.3390/cells11132033