Neuroscience
CREB (D76D11) Rabbit mAb
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イイネ!(2)
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| CSTコード |
包装 |
希望納入価格 (円) |
国内在庫  |
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| #4820S | 100 μL | 46,000 | |
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CREB抗体製品一覧
4820 の推奨プロトコール
最適な結果を得るために:Cell Signaling Technology (CST) 社は、各製品の推奨プロトコールを使用することを強くお薦めいたします。
推奨プロトコールはCST社内試験の徹底的なバリデーションに基づいて作成されておりますので、正確かつ再現性の高い結果が得られます。
注:各製品に最適化されたプロトコールをリンクしています。
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4820:
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ChIP Agarose
ChIP Magnetic
Flow
Immunofluorescence
Immunoprecipitation
Western Blotting
| 用途 (希釈倍率) | |
| ウェスタンブロッティング (1:1,000)、免疫沈降 (1:50)、免疫蛍光細胞染色 (IF-IC) (1:600)、免疫蛍光染色 (IF-F) (1:600)、フローサイトメトリー (1:200)、ChIP (1:50) |
| 種交差性 | |
| ヒト、マウス、ラット、サル、ハムスター、キイロショウジョウバエ |
| 特異性・感度 | |
| 内在性レベルのCREB タンパク質を検出します。ATF-1 タンパク質と交差します。 |
Western Blotting

Western blot analysis of extracts from various cell lines using CREB (D76D11) Rabbit mAb.
Flow Cytometry

Flow cytometric analysis of SH-SY5Y cells, using CREB (D76D11) Rabbit mAb Antibody (blue) compared to concentration matched Rabbit (DA1E) mAb IgG XP® Isotype Control #3900 (red).
IF-IC

Confocal immunofluorescent analysis of SH-SY5Y cells using CREB (D76D11) Rabbit mAb (green). Actin filaments have been labeled with DY-554 phalloidin (red).
IF-F

Confocal immunofluorescent analysis of mouse brain using CREB (D76D11) Rabbit mAb (green) and β3-Tubulin (TU-20) Mouse mAb #4466 (red).
Chromatin IP

Chromatin immunoprecipitations were performed with cross-linked chromatin from 4 x 106 293 cells treated with Forskolin #3828 (30 µM) and either 10 μl of CREB (D76D11) XP® Rabbit mAb or 2 μl of Normal Rabbit IgG #2729 using SimpleChIP® Enzymatic Chromatin IP Kit (Magnetic Beads) #9003. The enriched DNA was quantified by real-time PCR using human ALS2 exon 1 primers, SimpleChIP® Human Nr4A3 Promoter Primers #4829, and SimpleChIP® Human α Satellite Repeat Primers #4486. The amount of immunoprecipitated DNA in each sample is represented as signal relative to the total amount of input chromatin, which is equivalent to one.
CREB is a bZIP transcription factor that activates target genes through cAMP response elements. CREB is able to mediate signals from numerous physiological stimuli, resulting in regulation of a broad array of cellular responses. While CREB is expressed in numerous tissues, it plays a large regulatory role in the nervous system. CREB is believed to play a key role in promoting neuronal survival, precursor proliferation, neurite outgrowth, and neuronal differentiation in certain neuronal populations (1-3). Additionally, CREB signaling is involved in learning and memory in several organisms (4-6). CREB is able to selectively activate numerous downstream genes through interactions with different dimerization partners. CREB is activated by phosphorylation at Ser133 by various signaling pathways including Erk, Ca2+, and stress signaling. Some of the kinases involved in phosphorylating CREB at Ser133 are p90RSK, MSK, CaMKIV, and MAPKAPK-2 (7-9).
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Xing, J. et al. (1998) Mol Cell Biol 18, 1946-55.
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Ribar, T.J. et al. (2000) J Neurosci 20, RC107.
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