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Histone H4 K4 methyltransferas

e/SETD7 Antibody
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  • ¥2400
  • PLLABS已认证
  • 加拿大
  • PL0300456
  • 2025年07月10日
  • WB: 1:100-500 E: 1:500-1000 IP: 1:20-100 IHC: 1:100-500 IF: 1:100-500
  • Rabbit
  • Hu, Mo, Rat, Dog, Pig, Cow, Hor,
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    • 详细信息
    • 文献和实验
    • 技术资料
    • 免疫原

      Peptide derived from Hu Histone H4 K4 methyltransferase SETD7.

    • 亚型

      Rabbit Polyclonal IgG

    • 形态

      液态

    • 保存条件

      保存于-20℃

    • 克隆性

      多克隆

    • 标记物

      无标记(PLlabs可供应生物素、酶、荧光素标记的抗体)

    • 适应物种

      Hu, Mo, Rat, Dog, Pig, Cow, Hor,

    • 保质期

      按说明书条件可保存1-2年

    • 抗原来源

      见详细说明资料

    • 目录编号

      PL0300456

    • 级别

      超纯

    • 库存

      大量

    • 供应商

      华拓生物

    • 宿主

      Rabbit

    • 应用范围

      WB: 1:100-500 E: 1:500-1000 IP: 1:20-100 IHC: 1:100-500 IF: 1:100-500

    • 浓度

      1mg/ml

    • 靶点

      Histone H4 K4 methyltransferase/SETD7

    • 抗体英文名

      Histone H4 K4 methyltransferase/SETD7 Antibody

    • 抗体名

      组蛋白H4-K4甲基转移酶抗体

    • 规格

      0.1ml

    产品细节图片1
    Histone H4 K4 methyltransferase/SETD7 Antibody
    Cat#:PL0300456
    Isotype:Rabbit Polyclonal IgG
    Immunogen:Peptide derived from Hu Histone H4 K4 methyltransferase SETD7.
    Purification: Immunogen affinity purified

    Storage Buffer: PBS, pH 7.4(1%BSA and 0.1% Sodium azide)

    Background:
    Histone methyltransferase that specifically monomethylates 'Lys-4' of histone H3. H3 'Lys-4' methylation represents a specific tag for epigenetic transcriptional activation. Plays a central role in the transcriptional activation of genes such as collagenase or insulin. Recruited by IPF1/PDX-1 to the insulin promoter, leading to activate transcription. Has also methyltransferase activity toward non-histone proteins such as p53/TP53, TAF10, and possibly TAF7 by recognizing and binding the [KR]-[STA]-K in substrate proteins. Monomethylates 'Lys-189' of TAF10, leading to increase the affinity of TAF10 for RNA polymerase II. Monomethylates 'Lys-372' of p53/TP53, stabilizing p53/TP53 and increasing p53/TP53-mediated transcriptional activation.
    Alternate Names:
    FLJ21193; H3 K4 HMTase; H3-K4-HMTase SETD7; H4 lysine 4 specific; Histone H3 K4 methyltransferase; Histone H3 lysine 4 specific methyltransferase; Histone H3-K4 methyltransferase SETD7; Histone H4 K4 methyltransferase; Histone lysine N methyltransferase; Histone lysine N methyltransferase H3 lysine 4 specific SET7; Histone-lysine N-methyltransferase SETD7; KIAA1717; KMT7; Lysine methyltransferase; Lysine N-methyltransferase 7; OTTHUMP00000164543; OTTHUMP00000220049; SET 7; SET 7/9; SET 9; SET D7; SET domain containing (lysine methyltransferase) 7; SET domain containing protein 7; SET domain containing protein 8; SET domain-containing protein 7; SET7; SET7/9; SET9; Setd7; SETD7_Hu.
    Specificity Reaction:Hu, Mo, Rat, Dog, Pig, Cow, Hor,
    Application Notes:WB: 1:100-500 E: 1:500-1000 IP: 1:20-100 IHC: 1:100-500 IF: 1:100-500
    Storage :
    Store at –20ºC for one year. Avoid repeated freeze-thaw cycles. At 4ºC for 2-3 weeks after reconstituted.

    This product for research use only, not for use in humans, therapeutic or diagnostic procedures.
    PLlabs公司可供应相应抗体的生物素、辣根过氧化物酶、荧光素(FITC、PE、 CY3、 CY5、 CY7、 PE- CY3/5/7)标记抗体,欢迎大家咨询订购。

    产品细节图片2 产品细节图片3 产品细节图片4
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    图标文献和实验
    相关实验
    • Detection of Histone H3 Phosphorylation in Cultured Cells and Tissue Sections by Immunostaining

      . The protocol described here allows the detection of phosphorylated histones in tissue-cultured cells and tissue sections by fluorescent or bright-field immunostaining analysis. Here we used a serine 10 specific P-histone H3 antibody to determine

    • Chromatin Immunoprecipitation (ChIP) on Unfixed Chromatin from Cells and Tissues to Analyze Histone Modifications

      ," made up of fragments of up to seven nucleosomes in length, is incubated with an antiserum directed against the histone modification of interest. The antibody-bound fraction is separated from the unbound fraction and, after extraction of genomic DNA from the bound

    • 表观遗传学中组蛋白的修饰

      的作用是调控基因表达。例如组蛋白甲基化多导致基因沉默,去甲基化则相反;乙酰化一般是转录激活,去乙酰化则相反。当然,也可在此基础上产生复杂的生物学效应。例如组蛋白去乙酰化酶 HDAC 可影响免疫系统;H3K4me3、H3K9me2 能够调控记忆的形成, 而且 H3K 甲基化与 X 染色体失活、基因组印记和异染色质形成有关;H3 乙酰化通过多种机制调控以来 ATP 的染色质重塑 ,并参与炎症反应;H2A、H2B 泛素化则与 DNA 损害反应有关;而 H3S28 磷酸化与 H3K27 乙酰化可激活转录

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