Suppr超能文献

克服与年龄相关的慢性疾病反馈调节的二元NRF2激活剂的功能分析

FUNCTIONAL ANALYSIS OF BIPARTITE NRF2 ACTIVATORS THAT OVERCOME FEEDBACK REGULATION FOR AGE-RELATED CHRONIC DISEASES.

作者信息

Hushpulian Dmitry M, Kaidery Navneet Ammal, Soni Priyanka, Poloznikov Andrey A, Zakhariants Arpenik A, Razumovskaya Alexandra V, Silkina Maria O, Tishkov Vladimir I, Kazakov Eliot H, Brown Abraham M, Gaisina Irina N, Ahn Young-Hoon, Kazakov Sergey V, Krucher Nancy, Sharma Sudarshana M, Paul Bindu D, Gazaryan Irina G, Nikulin Sergey V, Thomas Bobby

出版信息

bioRxiv. 2025 May 31:2025.05.30.656434. doi: 10.1101/2025.05.30.656434.

Abstract

UNLABELLED

Activating Nrf2 with small molecules is a promising strategy for countering aging, oxidative stress, inflammation, and various disorders, including neurodegeneration. The primary regulator of Nrf2 protein stability is Keap1, a redox sensor protein and an adapter in the Cullin III ubiquitin ligase complex, which labels Nrf2 for proteasomal degradation. The known Nrf2 activators either chemically modify sensor thiols in Keap1 or competitively displace Nrf2 from the ubiquitin ligase complex. The latter approach is considered the most suitable for continuous administration, as non-specific chemical modifiers of Keap1 thiols also modify active thiols on other proteins, thus causing side effects. However, when transitioning from homogeneous to cell-based assays, genuine displacement activators show a significant loss in potency by several orders of magnitude. As we demonstrate here, this offset is due to the presence of high micromolar concentrations of Keap1 in both the cell lines and brain tissue. A potential solution could involve targeted delivery of an alkylating agent to Keap1 to achieve the desired specificity. Transcriptomic analysis of a cell-permeable Nrf2 peptide bearing an alkylating fumarate moiety indicates selective activation of the Nrf2 genetic program, confirming the high specificity of this approach. The Nrf2-triggered genetic program has a feedback regulation mechanism through the activation of Bach1, an Nrf2 transcriptional repressor, which is elevated in age-related neurodegeneration. Thus, a benign bipartite Nrf2 activator with Bach1 inhibition properties is needed for maximal benefits. The recently developed heterocyclic carboxamide, HPPE, shows overlap with the Nrf2 pathway activated by the fumarate-linked Nrf2 peptide and with zinc and tin protoporphyrins, which are recognized inhibitors of Bach1. Therefore, HPPE presents a promising and unique combination of the two desired activities that could be further optimized to treat age-related neurodegeneration.

HIGHLIGHTS

The decrease in potency for reversible displacement activators of Nrf2 in biological assays is attributed to high micromolar concentrations of Keap1 and competition with endogenous Keap1 client proteins.Nrf2 activators specific for Keap1 should combine a displacement scaffold with a substitution that undergoes intracellular conversion into active pro-oxidant or alkylating species.Cell-permeable fumarate-linked Nrf2 peptide solely activates the Nrf2 antioxidant genetic program, as demonstrated by transcriptomic analysis.HPPE, a small bipartite molecule, exhibits properties of both Nrf2 activation and Bach1 inhibition, to bypass feedback regulation by targeting both Keap1 and Bach1.

摘要

未标记

用小分子激活Nrf2是对抗衰老、氧化应激、炎症以及包括神经退行性变在内的各种疾病的一种有前景的策略。Nrf2蛋白稳定性的主要调节因子是Keap1,它是一种氧化还原传感器蛋白,也是Cullin III泛素连接酶复合物中的衔接蛋白,可标记Nrf2进行蛋白酶体降解。已知的Nrf2激活剂要么化学修饰Keap1中的传感器硫醇,要么从泛素连接酶复合物中竞争性取代Nrf2。后一种方法被认为最适合连续给药,因为Keap1硫醇的非特异性化学修饰剂也会修饰其他蛋白质上的活性硫醇,从而产生副作用。然而,当从均相分析过渡到基于细胞的分析时,真正的取代激活剂的效力会显著降低几个数量级。正如我们在此所证明的,这种偏差是由于细胞系和脑组织中均存在高微摩尔浓度的Keap1。一种潜在的解决方案可能涉及将烷基化剂靶向递送至Keap1以实现所需的特异性。对带有烷基化富马酸酯部分的细胞可渗透Nrf2肽进行转录组分析表明,Nrf2基因程序被选择性激活,证实了该方法的高特异性。Nrf2触发的基因程序通过激活Bach1(一种Nrf2转录抑制因子,在与年龄相关的神经退行性变中升高)具有反馈调节机制。因此,需要一种具有Bach1抑制特性的良性双功能Nrf2激活剂以获得最大益处。最近开发的杂环羧酰胺HPPE,与富马酸酯连接的Nrf2肽激活的Nrf2途径以及锌和锡原卟啉(公认的Bach1抑制剂)存在重叠。因此,HPPE呈现出两种所需活性的有前景且独特的组合,可进一步优化以治疗与年龄相关的神经退行性变。

要点

Nrf2可逆取代激活剂在生物学分析中的效力降低归因于高微摩尔浓度的Keap1以及与内源性Keap1客户蛋白的竞争。对Keap1具有特异性的Nrf2激活剂应将取代支架与经历细胞内转化为活性促氧化剂或烷基化物种的取代基相结合。转录组分析表明,细胞可渗透的富马酸酯连接的Nrf2肽仅激活Nrf2抗氧化基因程序。小分子双功能HPPE同时具有Nrf2激活和Bach1抑制特性,通过靶向Keap1和Bach1来绕过反馈调节。

相似文献

6
Systemic treatments for metastatic cutaneous melanoma.转移性皮肤黑色素瘤的全身治疗
Cochrane Database Syst Rev. 2018 Feb 6;2(2):CD011123. doi: 10.1002/14651858.CD011123.pub2.

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验