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NAcM-OPT Sale

目录号 : GC64989

NAcM-OPT is a specific, reversible and orally bioavailable inhibitor of cullin neddylation 1 (DCN1) that targets N-Acetyl-UBE2M (E2 conjugating enzyme, UBC12) interaction with DCN1 with IC50 of 79 nM.

NAcM-OPT Chemical Structure

Cas No.:2089293-61-6

规格 价格 库存 购买数量
10mM (in 1mL DMSO)
¥495.00
现货
5mg
¥450.00
现货
10mg
¥810.00
现货
50mg
¥2,430.00
现货
100mg
¥4,050.00
现货

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Sample solution is provided at 25 µL, 10mM.

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产品描述

NAcM-OPT is a specific, reversible and orally bioavailable inhibitor of cullin neddylation 1 (DCN1) that targets N-Acetyl-UBE2M (E2 conjugating enzyme, UBC12) interaction with DCN1 with IC50 of 79 nM.

[1] Daniel C Scott, et al. Nat Chem Biol. 2017 Aug;13(8):850-857.

Chemical Properties

Cas No. 2089293-61-6 SDF Download SDF
分子式 C23H29Cl2N3O 分子量 434.4
溶解度 DMSO : 125 mg/mL (287.75 mM; Need ultrasonic) 储存条件 Store at -20°C
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1 mg 5 mg 10 mg
1 mM 2.302 mL 11.5101 mL 23.0203 mL
5 mM 0.4604 mL 2.302 mL 4.6041 mL
10 mM 0.2302 mL 1.151 mL 2.302 mL
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Research Update

Discovery of an Orally Bioavailable Inhibitor of Defective in Cullin Neddylation 1 (DCN1)-Mediated Cullin Neddylation

J Med Chem 2018 Apr 12;61(7):2694-2706.PMID:29547693DOI:PMC5914176

We previously reported the discovery, validation, and structure-activity relationships of a series of piperidinyl ureas that potently inhibit the DCN1-UBE2M interaction. We demonstrated that compound 7 inhibits both the DCN1-UBE2M protein-protein interaction and DCN1-mediated cullin neddylation in biochemical assays and reduces levels of steady-state cullin neddylation in a squamous carcinoma cell line harboring DCN1 amplification. Although compound 7 exhibits good solubility and permeability, it is rapidly metabolized in microsomal models (CLint = 170 mL/min/kg). This work lays out the discovery of an orally bioavailable analogue, NAcM-OPT (67). Compound 67 retains the favorable biochemical and cellular activity of compound 7 but is significantly more stable both in vitro and in vivo. Compound 67 is orally bioavailable, well tolerated in mice, and currently used to study the effects of acute pharmacologic inhibition of the DCN1-UBE2M interaction on the NEDD8/CUL pathway.