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Selective targeting of disease-relevant protein binding domains by O-phosphorylated natural product derivatives

机译:O磷酸化的天然产物衍生物对疾病相关蛋白结合域的选择性靶向

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摘要

Phosphorylation-dependent protein binding domains are crucially important for intracellular signaling pathways and thus highly relevant targets in chemical biology. By screening of chemical libraries against 12 structurally diverse phosphorylation-dependent protein binding domains, we have identified fosfosal and dexamethasone-21-phosphate as selective inhibitors of two antitumor targets: the SH2 domain of the transcription factor STAT5b and the substrate-binding domain of the peptidyl-prolyl isomerase Pin1, respectively. Both compounds are phosphate prodrugs with documented clinical use as anti-inflammatory agents in humans and were discovered with a high hit rate from a small subgroup within the screening library. Our study indicates O-phosphorylation of appropriately preselected natural products or natural product derivatives as a generally applicable strategy for the identification of non-reactive and non-peptidic ligands of phosphorylation-dependent protein binding domains. Moreover, our data indicate that it would be advisable to monitor the bioactivities of clinically used prodrugs in their uncleaved state against phosphorylation-dependent protein binding domains.
机译:磷酸化依赖性蛋白结合域对于细胞内信号通路至关重要,因此对于化学生物学中高度相关的靶标也至关重要。通过针对12个结构多样的磷酸化依赖性蛋白结合结构域筛选化学文库,我们确定了磷膦酸和地塞米松21-磷酸酯是两种抗肿瘤靶标的选择性抑制剂:转录因子STAT5b的SH2结构域和底物结合结构域肽基脯氨酰异构酶Pin1。两种化合物均为磷酸盐前药,在人类中已被证明可作为抗炎药临床使用,并且从筛选文库中的一个小亚组中以高命中率被发现。我们的研究表明适当预选的天然产物或天然产物衍生物的O-磷酸化是鉴定磷酸化依赖性蛋白结合域的非反应性和非肽配体的普遍适用策略。此外,我们的数据表明,最好监测未裂解状态的临床使用前药对磷酸化依赖性蛋白结合域的生物活性。

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