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Stafia-1 Sale

目录号 : GC62559

Stafia-1 is the first STAT5a inhibitor that inhibits STAT5a (IC50=22.2?μM, Ki=10.9?μM) with at least 9‐fold selectivity over STAT5b and higher selectivity against other STAT family members.

Stafia-1 Chemical Structure

Cas No.:2582757-90-0

规格 价格 库存 购买数量
10mM (in 1mL DMSO)
¥2,255.00
现货
5 mg
¥2,025.00
现货
10 mg
¥3,200.00
现货
25 mg
¥6,399.00
现货
50 mg
¥10,206.00
现货
100 mg
¥17,100.00
现货

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Sample solution is provided at 25 µL, 10mM.

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产品描述

Stafia-1 is the first STAT5a inhibitor that inhibits STAT5a (IC50=22.2?μM, Ki=10.9?μM) with at least 9‐fold selectivity over STAT5b and higher selectivity against other STAT family members.

[1] Natarajan K, et al. Chemistry. 2020 Jan 2;26(1):148-154.

Chemical Properties

Cas No. 2582757-90-0 SDF
分子式 C24H27O10P 分子量 506.44
溶解度 DMSO : 250 mg/mL (493.64 mM; Need ultrasonic) 储存条件 Store at -20°C
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1 mg 5 mg 10 mg
1 mM 1.9746 mL 9.8728 mL 19.7457 mL
5 mM 0.3949 mL 1.9746 mL 3.9491 mL
10 mM 0.1975 mL 0.9873 mL 1.9746 mL
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Research Update

Stafia-1: a STAT5a-Selective Inhibitor Developed via Docking-Based Screening of in Silico O-Phosphorylated Fragments

Chemistry 2020 Jan 2;26(1):148-154.PMID:31503360DOI:10.1002/chem.201904147.

We present a new approach for the identification of inhibitors of phosphorylation-dependent protein-protein interaction domains, in which phenolic fragments are adapted by in silico O-phosphorylation before docking-based screening. From a database of 10 369 180 compounds, we identified 85 021 natural product-derived phenolic fragments, which were virtually O-phosphorylated and screened for in silico binding to the STAT3 SH2 domain. Nine screening hits were then synthesized, eight of which showed a degree of in vitro inhibition of STAT3. After analysis of its selectivity profile, the most potent inhibitor was then developed to Stafia-1, the first small molecule shown to preferentially inhibit the STAT family member STAT5a over the close homologue STAT5b. A phosphonate prodrug based on Stafia-1 inhibited STAT5a with selectivity over STAT5b in human leukemia cells, providing the first demonstration of selective in vitro and intracellular inhibition of STAT5a by a small-molecule inhibitor.

Asymmetrically Substituted m-Terphenyl Phosphates Inhibit the Transcription Factor STAT5a

Chembiochem 2022 Feb 16;23(4):e202100603.PMID:34905258DOI:10.1002/cbic.202100603.

We recently presented Stafia-1 as the first chemical entity that inhibits the transcription factor STAT5a with selectivity over the highly homologous STAT5b. Stafia-1, which was identified from a series of symmetrically substituted m-terphenyl phosphates, binds to the interface between the SH2 domain and the linker domain of STAT5a. Here, we outline a synthetic strategy for the synthesis of asymmetrically substituted m-terphenyl phosphates, which can be tailored to address their asymmetric STAT5a binding site in a more specific manner. The asymmetrically substituted m-terphenyl phosphate with the highest activity against STAT5a was converted to a phosphatase-stable monofluoromethylene phosphonate. The synthetic methodology and activity analysis described here provide first insights into the structure-activity relationships of m-terphenyl phosphates for use as selective STAT5a inhibitors.