一般描述
The ChIPAb+ Histone H3 (Unmodified Lys4) set includes the Anti-Histone H3 (unmodified Lys4) antibody, a negative control antibody (purified Mouse IgG), and qPCR primers which amplify a 110 bp region within the promoter of the human β-globin gene. The histone H3 (Unmodified Lys4) and negative control antibodies are supplied in a scalable "per ChIP" reaction size and can be used to functionally validate the precipitation of histone H3 (Unmodified Lys4)-associated chromatin.
免疫原
应用
Sonicated chromatin prepared from HeLa cells (2 X 106 cell equivalents per IP) was subjected to chromatin immunoprecipitation using 2 µg of either normal mouse IgG or Anti- Histone H3 (Unmodified Lys4) antibody and the Magna ChIP G Kit (Cat. #17-611). Successful immunoprecipitation of histone H3 associated DNA fragments was verified by qPCR using β-globin ChIP Primers versus GAPDH Promoter Control Primers. Data is presented as percent input of each IP sample relative to input chromatin, with the indicated primer sets (Please see figures).
Western Blot Analysis:
Acid extracted proteins from HeLa cells (Lane 1) and Recombinant Histones (Lane 2-6) were resolved by electrophoresis, transferred to PVDF membrane and probed with anti-Histone H3 (Unmodified Lys4) (0.1 μg/ml). Proteins were visualized using a goat-anti mouse secondary antibody conjugated to HRP (Cat. #AP124P) and a chemiluminescence detection system (Please see figures).
Epigenetics & Nuclear Function
Chromatin Biology
生化/生理作用
包装
外形
Normal Mouse IgG. Two vials containing 25 μg purified Mouse IgG in 25 μL storage buffer containing 0.1% sodium azide. Store at -20°C.
ChIP Primers β-Globin. One vial containing 75 μL of 5 μM of each primer specific for the human β-globin promoter. Store at -20°C.
FOR: AGG ACA GGT ACG GCT GTC ATC
REV: TTT ATG CCC AGC CCT GGC TC
制备说明
分析说明
Sonicated chromatin prepared from HeLa cells (1 X 106 cell equivalents per IP) were subjected to chromatin immunoprecipitation using 2 µg of either a normal mouse IgG or Anti-Histone H3 (Unmodified Lys4) antibody and the Magna ChIP G Kit (Cat. #17-611). Successful immunoprecipitation of histone H3 (Unmodified Lys4) associated DNA fragments was verified by qPCR using β-Globin ChIP Primers (Please see figures).
Please refer to the EZ-Magna G ChIP (Cat. #17-409) or EZ-ChIP (Cat. #17-371) protocol for experimental details.
Includes negative control mouse IgG antibody and control primers specific for human β-globin promoter.
法律信息
免责声明
储存分类代码
10 - Combustible liquids
法规信息
相关内容
Epigenetics describes heritable changes in gene expression caused by non-genetic mechanisms. Epigenetic regulation allows a cell to vary its response based on its biological and environmental contexts. Epigenetic changes can effect transcriptional and post-transcriptional regulation via mechanisms such as histone modification, chromatin and nucleosome remodeling, DNA methylation, and small and non-coding RNA-mediated regulation. These mechanisms, in cooperation with transcription factors and other nucleic acid-binding proteins, regulate gene expression. Epigenetic mechanisms of gene regulation impacts diverse areas of research—from agriculture to human health. Common epigenetic assays such as chromatin immunoprecipitation (ChIP) and RNA immunoprecipitation (RIP) rely on high quality antibodies that recognize specific epigenetic modifications for accurate results. EMD Millipore offers over 100 ChIPAb+™ and RIPAb+™ validated antibody kits that are quality tested on ChIP/RIP assays and are conveniently provided with control qPCR primers and negative control antibodies to ensure first time ChIP/RIP success.
Technical Guide to Chromatin Immunoprecipitation: Critical Factors for Success
"Epigenetics describes heritable changes in gene expression caused by non-genetic mechanisms instead of by alterations in DNA sequence. These changes can be cell- or tissue-specific, and can be passed on to multiple generations. Epigenetic regulation enriches DNAbased information, allowing a cell to vary its response across diverse biological and environmental contexts. Although epigenetic mechanisms are primarily centered in the nucleus, these mechanisms can be induced by environmental signals such as hormones, nutrients, stress, and cellular damage, pointing to the involvement of cytoplasmic and extracellular factors in epigenetic regulation."
Signaling Product Guide: Antibodies, small molecule inhibitors, kits, assays and proteins for signaling research.
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