AP-III-a4(Synonyms: ENOblock)

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AP-III-a4 (Synonyms: ENOblock) 纯度: ≥98.0%

ENOblock(AP-III-a4)是第一个非底物类似物,可直接与烯醇酶结合,IC50为0.576 uM,能抑制体内癌细胞转移。

AP-III-a4(Synonyms: ENOblock)

AP-III-a4 Chemical Structure

CAS No. : 1177827-73-4

规格 价格 是否有货 数量
1 mg ¥600 In-stock
5 mg ¥2100 In-stock
10 mg ¥3400 In-stock
25 mg ¥6800 In-stock
50 mg   询价  
100 mg   询价  

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AP-III-a4 相关产品

相关化合物库:

  • Bioactive Compound Library Plus
  • Metabolism/Protease Compound Library
  • Anti-Cancer Compound Library
  • Diabetes Related Compound Library
  • Glycolysis Compound Library
  • Anti-Cancer Metabolism Compound Library
  • Glucose Metabolism Compound Library

生物活性

ENOblock(AP-III-a4) is a novel small molecule which is the first, nonsubstrate analogue that directly binds to enolase and inhibits its activity (IC50=0.576 uM); inhibit cancer cell metastasis in vivo. IC50 value: 0.576 uM [1] Target: enolase Enolase is a component of the glycolysis pathway and a “moonlighting” protein, with important roles in diverse cellular processes that are not related to its function in glycolysis. However, small molecule tools to probe enolase function have been restricted to crystallography or enzymology. In this study, we report the discovery of the small molecule “ENOblock”, which is the first, nonsubstrate analogue that directly binds to enolase and inhibits its activity. ENOblock was isolated by small molecule screening in a cancer cell assay to detect cytotoxic agents that function in hypoxic conditions, which has previously been shown to induce drug resistance. Further analysis revealed that ENOblock can inhibit cancer cell metastasis in vivo. Moreover, an unexpected role for enolase in glucose homeostasis was revealed by in vivo analysis. Thus, ENOblock is the first reported enolase inhibitor that is suitable for biological assays. This new chemical tool may also be suitable for further study as a cancer and diabetes drug candidate. A Unique Small Molecule Inhibitor of Enolase Clarifies Its Role in Fundamental Biological Processes By Jung, Da-Woon; Kim, Woong-Hee; Park, Si-Hwan; Lee, Jinho; Kim, Jinmi; Su, Dongdong; Ha, Hyung-Ho; Chang, Young-Tae; Williams, Darren R. From ACS Chemical Biology (2013), 8(6), 1271-1282.

分子量

594.72

Formula

C31H43FN8O3

CAS 号

1177827-73-4

运输条件

Room temperature in continental US; may vary elsewhere.

储存方式

4°C, protect from light

*In solvent : -80°C, 6 months; -20°C, 1 month (protect from light)

溶解性数据
In Vitro: 

DMSO : 62.5 mg/mL (105.09 mM; ultrasonic and warming and heat to 60°C)

配制储备液
浓度 溶剂体积 质量 1 mg 5 mg 10 mg
1 mM 1.6815 mL 8.4073 mL 16.8146 mL
5 mM 0.3363 mL 1.6815 mL 3.3629 mL
10 mM 0.1681 mL 0.8407 mL 1.6815 mL

*

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, 6 months; -20°C, 1 month (protect from light)。-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。

In Vivo:

请根据您的实验动物和给药方式选择适当的溶解方案。以下溶解方案都请先按照 In Vitro 方式配制澄清的储备液,再依次添加助溶剂:

——为保证实验结果的可靠性,澄清的储备液可以根据储存条件,适当保存;体内实验的工作液,建议您现用现配,当天使用; 以下溶剂前显示的百
分比是指该溶剂在您配制终溶液中的体积占比;如在配制过程中出现沉淀、析出现象,可以通过加热和/或超声的方式助溶

  • 1.

    请依序添加每种溶剂: 10% DMSO    40% PEG300    5% Tween-80    45% saline

    Solubility: ≥ 2.5 mg/mL (4.20 mM); Clear solution

    此方案可获得 ≥ 2.5 mg/mL (4.20 mM,饱和度未知) 的澄清溶液。

    以 1 mL 工作液为例,取 100 μL 25.0 mg/mL 的澄清 DMSO 储备液加到 400 μL PEG300 中,混合均匀;向上述体系中加入50 μL Tween-80,混合均匀;然后继续加入 450 μL生理盐水定容至 1 mL。

    将 0.9 g 氯化钠,完全溶解于 100 mL ddH₂O 中,得到澄清透明的生理盐水溶液

  • 2.

    请依序添加每种溶剂: 10% DMSO    90% (20% SBE-β-CD in saline)

    Solubility: 2.5 mg/mL (4.20 mM); Suspended solution; Need ultrasonic

    此方案可获得 2.5 mg/mL (4.20 mM) 的均匀悬浊液,悬浊液可用于口服和腹腔注射。

    以 1 mL 工作液为例,取 100 μL 25.0 mg/mL 的澄清 DMSO 储备液加到 900 μL 20% 的 SBE-β-CD 生理盐水水溶液中,混合均匀。

    将 2 g 磺丁基醚 β-环糊精加入 5 mL 生理盐水中,再用生理盐水定容至 10 mL,完全溶解,澄清透明
  • 3.

    请依序添加每种溶剂: 10% DMSO    90% corn oil

    Solubility: ≥ 2.5 mg/mL (4.20 mM); Clear solution

    此方案可获得 ≥ 2.5 mg/mL (4.20 mM,饱和度未知) 的澄清溶液,此方案不适用于实验周期在半个月以上的实验。

    以 1 mL 工作液为例,取 100 μL 25.0 mg/mL 的澄清 DMSO 储备液加到 900 μL玉米油中,混合均匀。

*以上所有助溶剂都可在 上海金畔生物科技有限公司 网站选购。
参考文献
  • [1]. Da-Woon Jung, et al. A Unique Small Molecule Inhibitor of Enolase Clarifies Its Role in Fundamental Biological Processes.ACS Chem. Biol., 2013, 8 (6), pp 1271–1282

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