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Histone 3 抗体 (N-Term)

There are 9+ publications for this product available. The 小鼠 单克隆 anti-Histone 3 antibody is suitable to detect Histone 3 in samples from 人. It has been validated for IF, ChIP, ICC 和 ChIP-seq.
产品编号 ABIN2668390
发货至: 中国
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Quick Overview for Histone 3 抗体 (N-Term) (ABIN2668390)

抗原

See all Histone 3 (H3) 抗体
Histone 3 (H3) (Histone H3 (H3))

适用

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宿主

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小鼠

克隆类型

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单克隆

标记

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This Histone 3 antibody is un-conjugated

应用范围

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Immunofluorescence (IF), Chromatin Immunoprecipitation (ChIP), Immunocytochemistry (ICC), ChIP DNA-Sequencing (ChIP-seq)

克隆位点

MABI 0301
  • 抗原表位

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    N-Term

    原理

    Histone H3 antibody (mAb) (Clone MABI 0301)

    纯化方法

    Protein G Chromatography

    免疫原

    This Histone H3 antibody (mAb) was raised against a peptide containing the N-terminus of histone H3.

    亚型

    IgG2b
  • 应用备注

    ChIP-Seq: 4 μg per ChIP ChIP: 5 - 10 μg per ChIP ICC/IF: 1 μg/mL dilution For Histone H3, we also offer AbFlex Histone H3 Recombinant Antibody (rAb). For details, see Catalog No. 91297.

    限制

    仅限研究用
  • 浓度

    0.54 μg/μL

    缓冲液

    PBS pH 7.5 containing 30 % glycerol. 0.3M NaCl, and 0.035 % sodium azide.

    储存液

    Sodium azide

    注意事项

    This product contains Sodium azide: a POISONOUS AND HAZARDOUS SUBSTANCE which should be handled by trained staff only.

    注意事项

    Avoid repeated freeze/thaw cycles by aliquoting items into single-use fractions,Keep all reagents on ice when not in storage

    储存条件

    -20 °C

    储存方法

    Some products may be shipped at room temperature. This will not affect their stability or performance. Avoid repeated freeze/thaw cycles by aliquoting items into single-use fractions for storage at -20°C for up to 2 years. Keep all reagents on ice when not in storage.

    有效期

    24 months
  • Bulusu, Tumanov, Michalopoulou, van den Broek, MacKay, Nixon, Dhayade, Schug, Vande Voorde, Blyth, Gottlieb, Vazquez, Kamphorst: "Acetate Recapturing by Nuclear Acetyl-CoA Synthetase 2 Prevents Loss of Histone Acetylation during Oxygen and Serum Limitation." in: Cell reports, Vol. 18, Issue 3, pp. 647-658, (2017) (PubMed).

    Pacaud, Cheray, Nadaradjane, Vallette, Cartron: "Histone H3 phosphorylation in GBM: a new rational to guide the use of kinase inhibitors in anti-GBM therapy." in: Theranostics, Vol. 5, Issue 1, pp. 12-22, (2015) (PubMed).

    Wagner, Ciszewski, Kania: "L- and D-lactate enhance DNA repair and modulate the resistance of cervical carcinoma cells to anticancer drugs via histone deacetylase inhibition and hydroxycarboxylic acid receptor 1 activation." in: Cell communication and signaling : CCS, Vol. 13, pp. 36, (2015) (PubMed).

    Zhan, Kost-Alimova, Shi, Leo, Bardenhagen, Shepard, Appikonda, Vangamudi, Zhao, Tieu, Jiang, Heffernan, Marszalek, Toniatti, Draetta, Tyler, Barton, Jones, Palmer, Geck Do, Andersen: "Development of novel cellular histone-binding and chromatin-displacement assays for bromodomain drug discovery." in: Epigenetics & chromatin, Vol. 8, pp. 37, (2015) (PubMed).

    Fukuda, Mitani, Miyashita, Umezawa, Akutsu: "Chromatin condensation of Xist genomic loci during oogenesis in mice." in: Development (Cambridge, England), Vol. 142, Issue 23, pp. 4049-55, (2015) (PubMed).

    van de Werken, van der Heijden, Eleveld, Teeuwssen, Albert, Baarends, Laven, Peters, Baart: "Paternal heterochromatin formation in human embryos is H3K9/HP1 directed and primed by sperm-derived histone modifications." in: Nature communications, Vol. 5, pp. 5868, (2014) (PubMed).

    Murphy, Cipriany, Wallin, Ju, Szeto, Hagarman, Benitez, Craighead, Soloway: "Single-molecule analysis of combinatorial epigenomic states in normal and tumor cells." in: Proceedings of the National Academy of Sciences of the United States of America, Vol. 110, Issue 19, pp. 7772-7, (2013) (PubMed).

    Ohmori, Takai, Ishijima, Suzuki, Moriguchi, Philipsen, Yamamoto, Ohneda: "Regulation of GATA factor expression is distinct between erythroid and mast cell lineages." in: Molecular and cellular biology, Vol. 32, Issue 23, pp. 4742-55, (2012) (PubMed).

    Cerf, Tian, Craighead: "Ordered arrays of native chromatin molecules for high-resolution imaging and analysis." in: ACS nano, Vol. 6, Issue 9, pp. 7928-34, (2012) (PubMed).

  • 抗原

    Histone 3 (H3) (Histone H3 (H3))

    别名

    Histone H3

    背景

    Histone H3 is one of the core components of the nucleosome. The nucleosome is the smallest subunit of chromatin and consists of 147 base pairs of DNA wrapped around an octamer of core histone proteins (two each of Histone H2A, Histone H2B, Histone H3 and Histone H4). Histone H1 is a linker histone, present at the interface between the nucleosome core and DNA entry/exit points. Histone H1 is responsible for establishing higher-order chromatin structure. Each histone contains two domains. First, a main globular domain (C-terminal) forming the core of the nucleosome is involved in histone-histone interactions and in binding to the DNA. Secondly, an N-terminal tail is subject to post-translational modifications. Chromatin is subject to a variety of chemical modifications, including post-translational modifications of the histone proteins and the methylation of cytosine residues in the DNA. Reported histone modifications include acetylation, methylation, phosphorylation, ubiquitylation, glycosylation, ADP-ribosylation, carbonylation and SUMOylation, these modifications play a major role in regulating gene expression.

    分子量

    17 kDa

    基因ID

    3020

    NCBI登录号

    NP_003522
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