靶向i-motif DNA调控Nrf2表达。

IF 5.9 2区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Communications Chemistry Pub Date : 2025-01-06 DOI:10.1038/s42004-024-01387-w
E F Warner, D Guneri, M A O'Connell, C J MacDonald, Z A E Waller
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引用次数: 0

摘要

核因子(红细胞衍生2)样2 (Nrf2)是细胞解毒的关键调节因子,在健康细胞中维持稳态并促进癌细胞的化疗耐药。因此,控制这种转录因子的表达是非常有趣的。有许多化合物已经被证明可以诱导Nrf2的表达,但是可以抑制Nrf2的配体很少。在这里,我们描述了Nrf2启动子下游的i-motif形成序列,我们假设它可能调节基因的表达。Nrf2 i-motif在接近生理条件下是稳定的。我们发现了与这个i-motif结构相互作用的小分子配体,其中一个配体显著上调Nrf2 mRNA的表达,一个配体降低了人类癌细胞中Nrf2 mRNA的表达。这是通过靶向DNA结构来控制Nrf2启动子的第一个例子,并为开发化合物提供了另一种作用模式,以改善现有癌症治疗的化疗反应性。
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Modulation of Nrf2 expression by targeting i-motif DNA.

Nuclear factor (erythroid-derived 2)-like 2 (Nrf2) is a key regulator of cell detoxification, which maintains homoeostasis in healthy cells and promotes chemoresistance in cancer cells. Controlling the expression of this transcription factor is therefore of great interest. There are many compounds that have been shown to induce Nrf2 expression, but ligands that can inhibit Nrf2 are scant. Herein we characterise an i-motif-forming sequence downstream of the Nrf2 promoter, which we hypothesised may regulate the expression of the gene. The Nrf2 i-motif was found to be stable at near-physiological conditions. We identified small molecule ligands that interact with this i-motif structure and one significantly upregulated Nrf2 mRNA expression, and one ligand reduced Nrf2 mRNA expression in human cancer cells. This is the first example of controlling the promoter of Nrf2 by targeting DNA structures and offers an alternative mode of action for the development of compounds to improve the chemotherapeutic responsiveness of existing treatments for cancer.

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来源期刊
Communications Chemistry
Communications Chemistry Chemistry-General Chemistry
CiteScore
7.70
自引率
1.70%
发文量
146
审稿时长
13 weeks
期刊介绍: Communications Chemistry is an open access journal from Nature Research publishing high-quality research, reviews and commentary in all areas of the chemical sciences. Research papers published by the journal represent significant advances bringing new chemical insight to a specialized area of research. We also aim to provide a community forum for issues of importance to all chemists, regardless of sub-discipline.
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