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Discovery of the catechol structural moiety as a Stat3 SH2 domain inhibitor by virtual screening.

机译:通过虚拟筛选发现邻苯二酚结构部分作为Stat3 SH2域抑制剂。

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The Stat3 SH2 domain is essential for its activation, and development of a potent SH2 inhibitor will be therapeutically valuable in treating cancers with constant Stat3 activation. We report here the identification of the catechol (1,2-dihydroxybenzene) structural moiety by virtual screening as a Stat3 SH2 inhibitor. The catechol compound docked to the Stat3 SH2 domain in computer modeling forms hydrogen bonds with the conserved pTyr-interacting amino acids. In the biochemical assay, a catechol-containing compound, but not the hydroxyl group-acetalized analogue, was able to inhibit Stat3 DNA-binding activity. Furthermore, the catechol compound was demonstrated to compete with pTyr peptides in binding to the Stat3 SH2 domain, suggesting that the catechol moiety is a pTyr bioisostere and may potentially be used for designing cell-permeable SH2 inhibitors. In our preliminary effort, we also demonstrated that the potency of catechol compound as Stat3 SH2 inhibitors could be improved by modifying the non-catechol part of the compound structure.
机译:Stat3 SH2结构域对其激活至关重要,开发强大的SH2抑制剂在治疗具有恒定Stat3激活的癌症方面具有治疗价值。我们在这里报告通过虚拟筛选作为Stat3 SH2抑制剂对儿茶酚(1,2-二羟基苯)结构部分的鉴定。在计算机建模中,停靠到Stat3 SH2域的邻苯二酚化合物与保守的pTyr相互作用氨基酸形成氢键。在生化分析中,含邻苯二酚的化合物可抑制Stat3 DNA结合活性,但不能抑制羟基缩醛化的类似物。此外,已证明邻苯二酚化合物可与pTyr肽竞争与Stat3 SH2结构域的结合,表明该邻苯二酚部分是pTyr生物等排体,可潜在地用于设计可渗透细胞的SH2抑制剂。在我们的初步工作中,我们还证明了可以通过修饰化合物结构的非邻苯二酚部分来提高邻苯二酚作为Stat3 SH2抑制剂的效力。

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