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AlphaLISA Biotinylated Anti-Histone H3 (C-ter) Antibody, 2 µg

Biotinylated antibody against the C-terminal end of human histone H3, for use in Alpha no-wash epigenetic assays using full-length histone H3 as substrate.

For research use only; not for diagnostic procedures. All products to be used in accordance with applicable laws and regulations including without limitation, consumption & disposal requirements under European REACH regulations (EC 1907/2006).

貨號
產品尺寸
AL118C
2 µg
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AL118M
40 µg
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詳細信息

AlphaLISA® biotinylated monoclonal antibody recognizing the carboxy-terminal end of human histone H3. Broad species cross-reactivity is expected based on sequence similarity. This product is designed to be used with AlphaLISA® Epigenetics Acceptor beads to detect modified full-length histone H3 in homogeneous AlphaLISA assays.

規格

自動化兼容 Yes
檢測方法 Alpha
實驗類型 In vitro
Format Microplates
產品品牌名稱 AlphaLISA
運輸條件 藍冰
產品尺寸 2 µg
資源
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產品手冊

技術說明

AlphaLISA SET7/9 N-methyltransferase Assay using Full-length Histone H3

AlphaLISA technology is a powerful and versatile platform that offers highly sensitive, no-wash immunoassays using Alpha Donor and AlphaLISA Acceptor beads. In this technical note, we present the optimization of an epigenetic enzymatic assay using a full-length histone H3 substrate.

PDF 761 KB

海報

Development of a Non-Radioactive, No-Wash Biochemical Assay for High-Throughput Screening of Small Molecule Modulators of DNA MethyltransferasesNathalie

Covalen modification of DNA through methylation is catalyzed by specific DNA methyltransferases (DNMTs).

PDF 386 KB
Development of Homogeneous Non-radioactive Assays for Studying Histone H3 Methyltransferases and Demethylases

Anti-mark antibodies coupled to AlphaLISA Acceptor beads or labeled with LANCE Ultra europium chelate were used for the successful optimization of robust and, sensitive epigenetic assays using histone H3-derived peptides as substrates.

PDF 381 KB
Development of Homogeneous Proximity Assays for JMJD2A/2C Histone Demethylases

In eukaryotes, the covalent modification of histones has a crucial role in chromatin architecture and plays an important part in a plethora of cellular processes, from chromatinre modeling and transcriptional regulation, to DNA repair and cell cycle control.

PDF 289 KB
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