产品名称
Cdk1 Inhibitor IV, RO-3306, RO-3306 is a cell-permeable, potent and ATP-competitive inhibitor of Cdk1 (Ki = 35 nM and 110 nM for Cdk1/B1 and Cdk1/A, respectively).
Quality Level
assay
≥95% (HPLC)
form
solid
manufacturer/tradename
Calbiochem®
storage condition
OK to freeze, protect from light
color
brown
solubility
DMSO: 10 mg/mL
shipped in
ambient
storage temp.
2-8°C
General description
A cell-permeable quinolinyl thiazolinone compound that acts as a potent and ATP-competitive inhibitor of Cdk1 (Ki = 35 nM and 110 nM for Cdk1/B1 and Cdk1/A, respectively). It affects Cdk2/E, PKCδ, and SGK only at much higher concentrations (Ki = 340, 318, and 497 nM, respectively), and shows little effect against Cdk4/D and six other commonly studied kinases (Ki ≥ 2 µM). Short-term treatment for up to 20 hrs results in fully reversible G2/M cell cycle arrest, while prolonged treament (>48 hrs) results in apoptotic cell death in proliferating cancer cells, but not in nontumorigenic epithelial cell lines. Also available as a 10 mM solution in DMSO (Cat. No. 217721).
Biochem/physiol Actions
Cell permeable: yes
Primary Target
Cdk1
Cdk1
Product competes with ATP.
Reversible: no
Target Ki: 35 nM and 110 nM for Cdk1/B1 and Cdk1/A, respectively
Packaging
Packaged under inert gas
Preparation Note
Following reconstitution, aliquot and freeze (-20°C). Stock solutions are stable for up to 3 months at -20°C.
Other Notes
Vassilev, L.T., et al. 2006. Proc. Natl. Acad. Sci. USA103, 10660.
Legal Information
CALBIOCHEM is a registered trademark of Merck KGaA, Darmstadt, Germany
Disclaimer
Toxicity: Irritant (B)
存储类别
11 - Combustible Solids
wgk
WGK 3
flash_point_f
Not applicable
flash_point_c
Not applicable
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Journal of cellular biochemistry, 115(4), 763-771 (2014-01-24)
Genistein, an isoflavone abundantly present in soybeans, possesses anticancer properties and induces growth inhibition including cell cycle arrest and apoptosis. Although abnormal cell division, such as defects in chromosome segregation and spindle formation, and polyploidization have been described, the mechanisms
Ryan P Barnes et al.
Nature structural & molecular biology, 29(7), 639-652 (2022-07-01)
Oxidative stress is a primary cause of cellular senescence and contributes to the etiology of numerous human diseases. Oxidative damage to telomeric DNA has been proposed to cause premature senescence by accelerating telomere shortening. Here, we tested this model directly
Simon Gemble et al.
Nature, 604(7904), 146-151 (2022-04-01)
Diploid and stable karyotypes are associated with health and fitness in animals. By contrast, whole-genome duplications-doublings of the entire complement of chromosomes-are linked to genetic instability and frequently found in human cancers1-3. It has been established that whole-genome duplications fuel
全球贸易项目编号
| 货号 | GTIN |
|---|---|
| 217699-5MG | 04055977202342 |