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BET 抑制剂 JQ1 通过一种非溴结构域依赖的机制调控基因表达:直接激活核受体 PXR。

A bromodomain-independent mechanism of gene regulation by the BET inhibitor JQ1: direct activation of nuclear receptor PXR.

机构信息

Department of Chemical Biology and Therapeutics, St. Jude Children's Research Hospital, 262 Danny Thomas Place, Memphis, TN 38105, USA.

Department of Structural Biology, St. Jude Children's Research Hospital, 262 Danny Thomas Place, Memphis, TN 38105, USA.

出版信息

Nucleic Acids Res. 2024 Feb 28;52(4):1661-1676. doi: 10.1093/nar/gkad1175.

Abstract

Bromodomain and extraterminal (BET) proteins are extensively studied in multiple pathologies, including cancer. BET proteins modulate transcription of various genes, including those synonymous with cancer, such as MYC. Thus, BET inhibitors are a major area of drug development efforts. (+)-JQ1 (JQ1) is the prototype inhibitor and is a common tool to probe BET functions. While showing therapeutic promise, JQ1 is not clinically usable, partly due to metabolic instability. Here, we show that JQ1 and the BET-inactive (-)-JQ1 are agonists of pregnane X receptor (PXR), a nuclear receptor that transcriptionally regulates genes encoding drug-metabolizing enzymes such as CYP3A4, which was previously shown to oxidize JQ1. A PXR-JQ1 co-crystal structure identified JQ1's tert-butyl moiety as a PXR anchor and explains binding by (-)-JQ1. Analogs differing at the tert-butyl lost PXR binding, validating our structural findings. Evaluation in liver cell models revealed both PXR-dependent and PXR-independent modulation of CYP3A4 expression by BET inhibitors. We have characterized a non-BET JQ1 target, a mechanism of physiological JQ1 instability, a biological function of (-)-JQ1, and BET-dependent transcriptional regulation of drug metabolism genes.

摘要

溴结构域和末端结构域(BET)蛋白在多种病理学中得到了广泛研究,包括癌症。BET 蛋白调节多种基因的转录,包括与癌症同义的基因,如 MYC。因此,BET 抑制剂是药物开发努力的一个主要领域。(+) - JQ1(JQ1)是原型抑制剂,是探测 BET 功能的常用工具。虽然显示出治疗潜力,但 JQ1 在临床上不可用,部分原因是代谢不稳定。在这里,我们表明 JQ1 和 BET 失活的(-)-JQ1 是妊娠相关 X 受体(PXR)的激动剂,PXR 是一种核受体,可转录调节编码药物代谢酶的基因,如 CYP3A4,先前的研究表明 CYP3A4 氧化 JQ1。PXR-JQ1 共晶结构确定了 JQ1 的叔丁基部分是 PXR 的锚定点,并解释了(-)-JQ1 的结合。在叔丁基上有所不同的类似物失去了 PXR 结合,验证了我们的结构发现。在肝细胞模型中的评估揭示了 BET 抑制剂对 CYP3A4 表达的 PXR 依赖性和非依赖性调节。我们已经描述了一个非 BET JQ1 靶标,一种生理 JQ1 不稳定性的机制,(-)-JQ1 的一种生物学功能,以及 BET 依赖性药物代谢基因的转录调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b47/10899790/9e47bd16c34c/gkad1175figgra1.jpg

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