Home>>Signaling Pathways>> Ubiquitination/ Proteasome>> E3 Ligase>>5-amino-2,4-dimethylpyridine (5A-DMP)

5-amino-2,4-dimethylpyridine (5A-DMP)

目录号 : GC25019

5-amino-2,4-dimethylpyridine (5A-DMP) is a novel tandem Tudor domain (TTD)-binding compound that inhibits the full-length UHRF1:LIG1 interaction in Xenopus egg extracts

5-amino-2,4-dimethylpyridine (5A-DMP) Chemical Structure

Cas No.:1193-71-1

规格 价格 库存 购买数量
100mg
¥490.00
现货

电话:400-920-5774 Email: sales@glpbio.cn

Customer Reviews

Based on customer reviews.

Sample solution is provided at 25 µL, 10mM.

产品文档

Quality Control & SDS

View current batch:

产品描述

5-amino-2,4-dimethylpyridine (5A-DMP) is a novel tandem Tudor domain (TTD)-binding compound that inhibits the full-length UHRF1:LIG1 interaction in Xenopus egg extracts.

[1] Satomi Kori, et al. Bioorg Med Chem . 2021 Dec 15;52:116500.

Chemical Properties

Cas No. 1193-71-1 SDF Download SDF
分子式 C7H10N2 分子量 122.17
溶解度 DMSO: 24 mg/mL (196.45 mM);Water: 24 mg/mL (196.45 mM);Ethanol: 24 mg/mL (196.45 mM) 储存条件 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℃,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。

溶解性数据

制备储备液
1 mg 5 mg 10 mg
1 mM 8.1853 mL 40.9266 mL 81.8532 mL
5 mM 1.6371 mL 8.1853 mL 16.3706 mL
10 mM 0.8185 mL 4.0927 mL 8.1853 mL
  • 摩尔浓度计算器

  • 稀释计算器

  • 分子量计算器

质量
=
浓度
x
体积
x
分子量
 
 
 
*在配置溶液时,请务必参考产品标签上、MSDS / COA(可在Glpbio的产品页面获得)批次特异的分子量使用本工具。

计算

动物体内配方计算器 (澄清溶液)

第一步:请输入基本实验信息(考虑到实验过程中的损耗,建议多配一只动物的药量)
给药剂量 mg/kg 动物平均体重 g 每只动物给药体积 ul 动物数量
第二步:请输入动物体内配方组成(配方适用于不溶于水的药物;不同批次药物配方比例不同,请联系GLPBIO为您提供正确的澄清溶液配方)
% DMSO % % Tween 80 % saline
计算重置

Research Update

Structure-based screening combined with computational and biochemical analyses identified the inhibitor targeting the binding of DNA Ligase 1 to UHRF1

Bioorg Med Chem 2021 Dec 15;52:116500.PMID:34801826DOI:10.1016/j.bmc.2021.116500

The accumulation of epigenetic alterations is one of the major causes of tumorigenesis. Aberrant DNA methylation patterns cause genome instability and silencing of tumor suppressor genes in various types of tumors. Therefore, drugs that target DNA methylation-regulating factors have great potential for cancer therapy. Ubiquitin-like containing PHD and RING finger domain 1 (UHRF1) is an essential factor for DNA methylation maintenance. UHRF1 is overexpressed in various cancer cells and down-regulation of UHRF1 in these cells reactivates the expression of tumor suppressor genes, thus UHRF1 is a promising target for cancer therapy. We have previously shown that interaction between the tandem Tudor domain (TTD) of UHRF1 and DNA ligase 1 (LIG1) di/trimethylated on Lys126 plays a key role in the recruitment of UHRF1 to replication sites and replication-coupled DNA methylation maintenance. An arginine binding cavity (Arg-binding cavity) of the TTD is essential for LIG1 interaction, thus the development of inhibitors that target the Arg-binding cavity could potentially repress UHRF1 function in cancer cells. To develop such an inhibitor, we performed in silico screening using not only static but also dynamic metrics based on all-atom molecular dynamics simulations, resulting in efficient identification of 5-amino-2,4-dimethylpyridine (5A-DMP) as a novel TTD-binding compound. Crystal structure of the TTD in complex with 5A-DMP revealed that the compound stably bound to the Arg-binding cavity of the TTD. Furthermore, 5A-DMP inhibits the full-length UHRF1:LIG1 interaction in Xenopus egg extracts. Our study uncovers a UHRF1 inhibitor which can be the basis of future experiments for cancer therapy.