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不对称取代的间三联苯磷酸盐抑制转录因子 STAT5a。

Asymmetrically Substituted m-Terphenyl Phosphates Inhibit the Transcription Factor STAT5a.

机构信息

Institute of Organic Chemistry, Leipzig University, Johannisallee 29, 04103, Leipzig, Germany.

出版信息

Chembiochem. 2022 Feb 16;23(4):e202100603. doi: 10.1002/cbic.202100603. Epub 2021 Dec 29.

Abstract

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.

摘要

我们最近介绍了 Stafia-1,它是第一个能够选择性抑制转录因子 STAT5a 的化学实体,而对高度同源的 STAT5b 没有抑制作用。Stafia-1 是从一系列对称取代的 m-三联苯磷酸盐中鉴定出来的,它结合在 STAT5a 的 SH2 结构域和连接区之间的界面上。在这里,我们概述了一种合成不对称取代的 m-三联苯磷酸盐的策略,该策略可以更具体地针对其不对称的 STAT5a 结合位点进行定制。针对 STAT5a 活性最高的不对称取代的 m-三联苯磷酸盐被转化为一种磷酸酶稳定的单氟亚甲基膦酸酯。这里描述的合成方法和活性分析为作为选择性 STAT5a 抑制剂的 m-三联苯磷酸盐的结构-活性关系提供了初步的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da57/9303812/defdf42b964c/CBIC-23-0-g006.jpg

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