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Caylin-1 Sale

目录号 : GC43207

A novel nutlin-3 analog with cell growth-promoting properties

Caylin-1 Chemical Structure

Cas No.:1207480-88-3

规格 价格 库存 购买数量
1mg
¥857.00
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5mg
¥3,854.00
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10mg
¥6,853.00
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Sample solution is provided at 25 µL, 10mM.

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产品描述

Nutlin-3 is an activator of p53 that functions by inhibiting the interaction of p53 with MDM2, a negative regulator of p53 activity. Caylin-1 is a nutlin-3 analog which contains chlorine substituents at the 3 and 4 positions on two of the phenyl rings rather than a single 4-chloro as seen in nutlin-3. At high concentrations, caylin-1 inhibits the growth of HCT116 cells with an IC50 value of approximately 7 µM, making it about 7-fold less potent than nutlin-3 in the same assay. Interestingly, at concentrations at or below 1 µM, caylin-1 promotes the growth of HCT116 cells approximately 20% compared to untreated cells. The mechanism of the growth promoting properties of caylin-1 have not yet been elucidated.

Chemical Properties

Cas No. 1207480-88-3 SDF
Canonical SMILES COc1ccc(c(OC(C)C)c1)C1=N[C@@H](c2ccc(Cl)c(Cl)c2)[C@@H](c2ccc(Cl)c(Cl)c2)N1C(=O)N1CCNC(=O)C1
分子式 C30H28Cl4N4O4 分子量 650.4
溶解度 Soluble in DMSO 储存条件 Store at -20°C
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1 mg 5 mg 10 mg
1 mM 1.5375 mL 7.6876 mL 15.3752 mL
5 mM 0.3075 mL 1.5375 mL 3.075 mL
10 mM 0.1538 mL 0.7688 mL 1.5375 mL
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Research Update

DNA damage response to the Mdm2 inhibitor nutlin-3

Biochem Pharmacol 2010 Feb 15;79(4):565-74.PMID:19788889DOI:PMC2794967

Mdm2 inhibitors represent a promising class of p53 activating compounds that may be useful in cancer treatment and prevention. However, the consequences of pharmacological p53 activation are not entirely clear. We observed that Nutlin-3 triggered a DNA damage response in azoxymethane-induced mouse AJ02-NM(0) colon cancer cells, characterized by the phosphorylation of H2AX (at Ser-139) and p53 (at Ser-15). The DNA damage response was highest in cells showing robust p53 stabilization, it could be triggered by the active but not the inactive Nutlin-3 enantiomer, and it was also activated by another pharmacological Mdm2 inhibitor (Caylin-1). Quantification of gamma H2AX-positive cells following Nutlin-3 exposure showed that approximately 17% of cells in late S and G2/M were mounting a DNA damage response (compared to a approximately 50% response to 5-fluorouracil). Nutlin-3 treatment caused the formation of double-strand DNA strand breaks, promoted the formation of micronuclei, accentuated strand breakage induced by doxorubicin and sensitized the mouse colon cancer cells to DNA break-inducing topoisomerase II inhibitors. Although the HCT116 colon cancer cells did not mount a significant DNA damage response following Nutlin-3 treatment, Nutlin-3 enhanced the DNA damage response to the nucleotide synthesis inhibitor hydroxyurea in a p53-dependent manner. Finally, p21 deletion also sensitized HCT116 cells to the Nutlin-3-induced DNA damage response, suggesting that cell cycle checkpoint abnormalities may promote this response. We propose that p53 activation by Mdm2 inhibitors can result in the slowing of double-stranded DNA repair. Although this effect may suppress illegitimate homologous recombination repair, it may also increase the risk of clastogenic events.