Anti-ZNF334抗体(ab127712)
Key features and details
- Rabbit polyclonal to ZNF334
- Suitable for: WB
- Reacts with: Human
- Isotype: IgG
概述
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产品名称
Anti-ZNF334抗体 -
描述
兔多克隆抗体to ZNF334 -
宿主
Rabbit -
经测试应用
适用于: WBmore details -
种属反应性
与反应: Human -
免疫原
Recombinant fragment, corresponding to a region within amino acids 71-334 of Human ZNF334 (Q9HCZ1).
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阳性对照
- NT2D1 and IMR32 whole cell lysates.
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常规说明
The Life Science industry has been in the grips of a reproducibility crisis for a number of years. Abcam is leading the way in addressing this with our range of recombinant monoclonal antibodies and knockout edited cell lines for gold-standard validation. Please check that this product meets your needs before purchasing.
If you have any questions, special requirements or concerns, please send us an inquiry and/or contact our Support team ahead of purchase. Recommended alternatives for this product can be found below, along with publications, customer reviews and Q&As
性能
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形式
Liquid -
存放说明
Shipped at 4°C. Upon delivery aliquot. Store at -20°C or -80°C. Avoid freeze / thaw cycle. -
存储溶液
pH: 7.00
Preservative: 0.01% Thimerosal (merthiolate)
Constituents: 78.99% PBS, 1% BSA, 20% Glycerol (glycerin, glycerine) -
Concentration information loading...
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纯度
Immunogen affinity purified -
克隆
多克隆 -
同种型
IgG -
研究领域
相关产品
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Compatible Secondaries
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Isotype control
应用
The Abpromise guarantee
Abpromise™承诺保证使用ab127712于以下的经测试应用
“应用说明”部分 下显示的仅为推荐的起始稀释度;实际最佳的稀释度/浓度应由使用者检定。
应用 | Ab评论 | 说明 |
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WB |
1/500 - 1/3000. Predicted molecular weight: 80 kDa.
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说明 |
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WB
1/500 - 1/3000. Predicted molecular weight: 80 kDa. |
靶标
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相关性
ZNF334 belongs to the krueppel C2H2-type zinc-finger protein family. It contains 14 C2H2-type zinc fingers and 1 KRAB domain. ZNF334 may be involved in transcriptional regulation. -
细胞定位
Nuclear -
数据库链接
- Entrez Gene: 55713 Human
- SwissProt: Q9HCZ1 Human
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别名
- OTTHUMP00000031209 antibody
- RP11-179N14.1 antibody
- zfp334 antibody
- zinc finger protein 334 antibody
图片
数据表及文件
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SDS download
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Datasheet download
文献 (1)
ab127712 被引用在 1 文献中.
- Sun D et al. DNA hypermethylation modification promotes the development of hepatocellular carcinoma by depressing the tumor suppressor gene ZNF334. Cell Death Dis 13:446 (2022). PubMed: 35534462