Anti-WSTF 抗体 [EPR1703]
Anti-WSTF antibody [EPR1703]
- RabMAb
- Recombinant
- KO Validated
- 詳細を見る
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Rabbit Recombinant Monoclonal WSTF antibody. Suitable for WB and reacts with Human, Mouse, Rat samples.
別名を表示する
WBSC10, WBSCR10, WBSCR9, WSTF, BAZ1B, Tyrosine-protein kinase BAZ1B, Bromodomain adjacent to zinc finger domain protein 1B, Williams syndrome transcription factor, Williams-Beuren syndrome chromosomal region 10 protein, Williams-Beuren syndrome chromosomal region 9 protein, hWALp2
- WB
Lab
Western blot - Anti-WSTF antibody [EPR1703] (AB109439)
Lanes 1- 2 : Merged signal (red and green). Green - ab109439 observed at 171 kDa. Red - Anti-alpha Tubulin antibody [DM1A] - Loading Control (ab7291) observed at 50 kDa.
ab109439 was shown to react with WSTF in wild-type HeLa cells in western blot. Loss of signal was observed when knockout cell line ab264907 (knockout cell lysate ab257370) was used. Wild-type HeLa and WSTF knockout HeLa cell lysates were subjected to SDS-PAGE. Membrane was blocked for 1 hour at room temperature in 0.1% TBST with 3% non-fat dried milk. ab109439 and Anti-alpha Tubulin antibody [DM1A] - Loading Control (ab7291) overnight at 4°C at a 1 in 1000 dilution and a 1 in 20000 dilution respectively. Blots were developed with Goat anti-Rabbit IgG H&L (IRDye®800CW) preadsorbed (ab216773) and Goat anti-Mouse IgG H&L (IRDye®680RD) preadsorbed (ab216776) secondary antibodies at 1 in 20000 dilution for 1 hour at room temperature before imaging.
All lanes:
Western blot - Anti-WSTF antibody [EPR1703] (ab109439) at 1/1000 dilution
Lane 1:
Wild-type HeLa cell lysate at 20 µg
Lane 2:
WSTF knockout HeLa cell lysate at 20 µg
Lane 2:
Western blot - Human BAZ1B (WSTF) knockout HeLa cell line (<a href='/products/cell-lines/human-baz1b-wstf-knockout-hela-cell-line-ab264907'>ab264907</a>)
Predicted band size: 171 kDa
Observed band size: 171 kDa
false
- WB
Lab
Western blot - Anti-WSTF antibody [EPR1703] (AB109439)
Lanes 1 - 3 : Merged signal (red and green). Green - ab109439 observed at 171 kDa. Red - loading control, ab18058, observed at 130 kDa.
ab109439 was shown to recognize BAZ1B in wild-type cells along with additional cross-reactive bands as signal was lost in BAZ1B knockout samples. Wild-type and BAZ1B knockout samples were subjected to SDS-PAGE. ab109439 and ab18058 (Mouse anti Vinculin loading control) were incubated overnight at 4°C at 1/1000 dilution and 1/10000 dilution respectively. Blots were developed with Goat anti-Rabbit IgG H&L (IRDye® 800CW) preabsorbed ab216773 and Goat anti-Mouse IgG H&L (IRDye® 680RD) preabsorbed ab216776 secondary antibodies at 1/10000 dilution for 1 hour at room temperature before imaging.
All lanes:
Western blot - Anti-WSTF antibody [EPR1703] (ab109439) at 1/1000 dilution
Lane 1:
Wild type HAP1 whole cell lysate at 20 µg
Lane 2:
BAZ1B knockout HAP1 whole cell lysate at 20 µg
Lane 3:
HeLa whole cell lysate at 20 µg
Predicted band size: 171 kDa
false
- WB
Unknown
Western blot - Anti-WSTF antibody [EPR1703] (AB109439)
All lanes:
Western blot - Anti-WSTF antibody [EPR1703] (ab109439) at 1/1000 dilution
Lane 1:
293T cell lysates at 10 µg
Lane 2:
HeLa cell lysates at 10 µg
Lane 3:
HT-1080 cell lysates at 10 µg
Lane 4:
PC-12 cell lysates at 10 µg
Lane 5:
SH-SY5Y cell lysates at 10 µg
Predicted band size: 171 kDa
Observed band size: 185 kDa
false
- OI-RD Scanning
Unknown
OI-RD Scanning - Anti-WSTF antibody [EPR1703] (AB109439)
We have systematically measured KD (the equilibrium dissociation constant between the antibody and its antigen), of more than 840 recombinant antibodies to assess not only their individual KD values but also to see the average affinity of antibody. Based on the comparison with published literature values for mouse monoclonal antibodies, Recombinant antibodies appear to be on average 1-2 order of magnitude higher affinity.
関連する標識済み抗体及び組成の異なる製品 (1)
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Anti-WSTF antibody [EPR1703] - BSA and Azide free
Reactivity data
製品の詳細
出荷温度及び保存条件
製品の状態
精製方法
バッファー組成
出荷温度
短期保存温度
長期保存温度
保管に関する情報
補足情報
This supplementary information is collated from multiple sources and compiled automatically.
Biological function summary
Since WSTF participates in chromatin structure modulation it plays a considerable role in transcriptional regulation. It is a part of the NURF complex which makes it essential for DNA accessibility and gene expression. The complex interacts with other proteins to allow chromatin to accommodate active transcription by repositioning nucleosomes. WSTF also has a kinase domain that phosphorylates histone H2A. This phosphorylation integrates signals that coordinate transcription and DNA damage repair mechanisms highlighting its multifunctional nature in maintaining genomic stability.
Pathways
WSTF has pivotal roles in the chromatin remodeling and DNA repair pathways. The chromatin remodeling pathway involves WSTF's interaction with the transcription factor complex influencing gene accessibility and expression. WSTF in the DNA repair pathway ensures proper genomic integrity through its association with proteins like BRCA1 highlighting its participation in the cellular response to DNA damage. By engaging with these pathways WSTF contributes to the cell's ability to regulate the genome and respond to damage efficiently.
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