L189

目录号: GC12131纯度: >98.00%
A DNA ligase inhibitor

L189
Cas No.: 64232-83-3
规格价格库存数量操作
1mg¥214.00现货
1
5mg¥450.00现货
1
10mg¥765.00现货
1
25mg¥1,607.00现货
1
50mg¥2,731.00现货
1
10mM (in 1mL DMSO)¥581.00现货
1

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产品描述 Description

The chemical structure of L189 had been shown [1]. Three distinct chemical steps are involved in the formation of a new phosphodiester bond in DNA: (1) enzyme adenylylation, (2) adenylyl transfer to DNA, and (3) nick sealing [2]. L189 preferentially inhibits the second step [1]. L189 showed no inhibition even at a concentration of 100 μM to T4 DNA ligase. IC50 values for L189 to inhibit human DNA ligases I, III and IV are 5 ± 2 µM, 9 ± 2 µM and 5 ± 2 µM, respectively [1].

DNA ligase I catalyzes the ligation of single-strand breaks to complete DNA replication and repair. DNA ligase III is required for mitochondrial DNA replication and repair. DNA ligase IV is specialized for repair of nuclear double-strand breaks and is required for nonhomologous end joining and V (D) J recombination [2].

In a concentration-dependent manner, L189 reduced the viability and/or proliferation of a normal breast epithelial cell line MCF10A and the cancer cell lines HeLa, MCF7 and HCT116 established from cervical, breast and colon cancers, respectively. L189 also increase the rate of killed cells in cancer cell lines, especially HCT116 colon cancer cell lines and other cancer cell lines by ionizing radiation. But L189 did not increase the rate of killed cells in the normal cell line [1].

In vivo data and clinical trials are not yet available [3].

References:
[1].  Xi Chen, Shijun Zhong, Xiao Zhu, et al. Rational Design of Human DNA Ligase Inhibitors that Target Cellular DNA Replication and Repair. Cancer Res., 2008, 68(9): 3169-3177.
[2].  Mark R. Taylor, John A. Conrad, Daniel Wahl, et al. Kinetic Mechanism of Human DNA Ligase I Reveals Magnesium-dependent Changes in the Rate-limiting Step That Compromise Ligation Efficiency. Journal of Biological Chemistry, 2011, 286(26): 23054-23062.
[3].  Christian Jekimovs, Emma Bolderson, Amila Suraweera, et al. Chemotherapeutic compounds targeting the DNA double-strand break repair pathways: the good, the bad, and the promising. Frontiers in Oncology, 2014, 4: Article 86.

实验参考方法 Experimental Reference Method

Cell experiment [1]:

Cell lines

Human breast epithelial MCF10A cells, human colon cancer HCT116 cells, human cervical cancer HeLa cells, and human breast cancer MCF7 cells.

Preparation method

The solubility of this compound in DMSO is >10 mM. General tips for obtaining a higher concentration: Please warm the tube at 37℃ for 10 minutes and/or shake it in the ultrasonic bath for a while. Stock solution can be stored below -20℃ for several months.

Reacting condition

0~50 µmol/L for 6 days

Applications

In a concentration-dependent manner, L189 (0~50 µmol/L) reduced the proliferation and/or viability of a normal breast epithelial cell line MCF10A and the cancer cell lines MCF7, HeLa, and HCT116 established from breast, cervical, and colon cancers, respectively. In colony-forming assays, L189 was cytotoxic. L189 also increase the rate of killed cells in cancer cell lines, especially HCT116 colon cancer cell line and other cancer cell lines by ionizing radiation. But L189 did not increase the rate of killed cells in the normal cell line.

References:

[1] Christian Jekimovs, Emma Bolderson, Amila Suraweera, et al. Chemotherapeutic compounds targeting the DNA double-strand break repair pathways: the good, the bad, and the promising. Frontiers in Oncology, 2014, 4: Article 86.

产品文档 Product Documents

Purity:>98.00%

化学性质Chemical Properties

CAS 号
64232-83-3
化学名
(Z)-6-amino-5-(benzylideneamino)-2-thioxo-2,3-dihydropyrimidin-4(1H)-one
SMILES
S=C(NC1=O)NC(N)=C1/N=C\C2=CC=CC=C2
分子式
C11H10N4OS
分子量
246.29 g/mol
溶解性
≥ 62.5mg/mL in DMSO
保存条件
Store at -20°C
General tips
请根据产品在不同溶剂中的溶解度选择合适的溶剂配制储备液;一旦配成溶液,请分装保存,避免反复冻融造成的产品失效。
储备液的保存方式和期限:-80°C 储存时,请在 6 个月内使用,-20°C 储存时,请在 1 个月内使用。
为了提高溶解度,请将管子加热至 37°C,然后在超声波浴中震荡一段时间。
Shipping Condition
评估样品解决方案:配备蓝冰进行发货。所有其他可用尺寸:配备 RT,或根据请求配备蓝冰。

计算工具摩尔浓度 / 稀释 / 分子量 / 单位换算 / 体内配方 / 溶解度

g/mol