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Histone H3, C-terminal antibody (pAb)
Histone H3, C-terminal antibody (pAb)
- 中文名称:
- Histone H3, C-terminal antibody (pAb)
- 英文名称:
- Histone H3, C-terminal antibody (pAb)
- 品牌:
- AAA Biotech
- 品牌介绍:
- AAA Biotech专注于为全球生命科学研究提供高品质的蛋白质研究工具,核心产品包括经严格验证的抗体、重组蛋白及ELISA试剂盒。
- 货号:
- AAA59804
- 规格:
- 0.01 mL|0.05 mL|0.1 mL|2x0.1 mL|3x0.1 mL
- 保存建议:
- 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 degree C for up to 2 years. Keep all reagents on ice when not in storage.1ug/ul
- 货期:
- 6-8周
- 来源宿主:
- Rabbit
- 反应种属:
- Human
- 应用:
- WB (Western Blot), ELISA
- 免责声明:
- *本产品仅供科研实验使用,不得用于临床诊断。*
- 其他:
克隆性:Polyclonal
同型:IgG
克隆号:N/A
特异性:N/A
纯度:N/A
形式:Rabbit serum containing 30% glycerol and 0.035% sodium azide. Sodium azide is highly toxic.
浓度:N/A
- 说明书:
Short Description: Our Histone H3, C-terminal antibody (pAb) was raised in a Rabbit host. It has been validated for use in ELISA and Western blot; it has been shown to react with Human samples.
Background: 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.