天然产物梣酮的一种新型类似物可抵御内源性和外源性神经毒素的侵害

IF 3.9 3区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Anna E. Bartman, Mersad Raeisi, Clarence D. Peiris, Isabella E. Jacobsen, David B.C. Martin* and Jonathan A. Doorn*, 
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引用次数: 0

摘要

许多内源性(如谷氨酸)和外源性(如杀虫剂)损伤都会损害神经系统的功能,并构成损害或日后患病的风险因素。在以前的报告中,类柠檬醛(如 fraxinellone)对体外谷氨酸(Glu)兴奋毒性和活性氧(ROS)的产生具有显著的神经保护活性,尽管提供的机理信息很少。鉴于这些发现,我们合成了一个新型氟辛内酯类似物库(包括本文所述的类似物 1 和 2),目的是找出具有抗损伤神经保护作用的化合物。在使用 PC12 和 SH-SY5Y 细胞进行的体外试验中,发现类似物 2 对 Glu 介导的兴奋毒性具有保护作用,其 EC50 分别为 44 和 39 nM。通过 qPCR 测量,类似物 2 的预处理可快速诱导抗氧化基因,即 Gpx4、Sod1 和 Nqo1。类似物 2 可减轻 Glu 介导的 ROS。细胞保护可通过 Nrf2 激活剂 sulforaphane(SFN)来复制,也可通过 ML-385 来抑制,ML-385 可抑制 Nrf2 与调控 DNA 序列的结合,从而阻断下游基因的表达。我们使用基于 Nrf2 酶联免疫吸附的转录因子检测法证明了 Nrf2 的 DNA 结合活性。此外,我们还发现,用硫醇 N-acetyl Cys 预处理可完全缓解 SFN 介导的抗氧化基因诱导,但对类似物 2 的活性没有影响,这表明硫醇修饰对其作用机制并不重要。总之,我们的数据证明了一种氟西尼龙类似物是一种新型、强效、快速的 Nrf2 介导的抗氧化防御系统激活剂,可提供强大的抗损伤保护。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A Novel Analog of the Natural Product Fraxinellone Protects against Endogenous and Exogenous Neurotoxicants

A Novel Analog of the Natural Product Fraxinellone Protects against Endogenous and Exogenous Neurotoxicants

A Novel Analog of the Natural Product Fraxinellone Protects against Endogenous and Exogenous Neurotoxicants

Numerous insults, both endogenous (e.g., glutamate) and exogenous (e.g., pesticides), compromise the function of the nervous system and pose risk factors for damage or later disease. In previous reports, limonoids such as fraxinellone showed significant neuroprotective activity against glutamate (Glu) excitotoxicity and reactive oxygen species (ROS) production in vitro, albeit with minimal mechanistic information provided. Given these findings, a library of novel fraxinellone analogs (including analogs 1 and 2 described here) was synthesized with the goal of identifying compounds exhibiting neuroprotection against insults. Analog 2 was found to be protective against Glu-mediated excitotoxicity with a measured EC50 of 44 and 39 nM for in vitro assays using PC12 and SH-SY5Y cells, respectively. Pretreatment with analog 2 yielded rapid induction of antioxidant genes, namely, Gpx4, Sod1, and Nqo1, as measured via qPCR. Analog 2 mitigated Glu-mediated ROS. Cytoprotection could be replicated using sulforaphane (SFN), a Nrf2 activator, and inhibited via ML-385, which inhibits Nrf2 binding to regulatory DNA sequences, thereby blocking downstream gene expression. Nrf2 DNA-binding activity was demonstrated using a Nrf2 ELISA-based transcription factor assay. In addition, we found that pretreatment with the thiol N-acetyl Cys completely mitigated SFN-mediated induction of antioxidant genes but had no effect on the activity of analog 2, suggesting thiol modification is not critical for its mechanism of action. In summary, our data demonstrate a fraxinellone analog to be a novel, potent, and rapid activator of the Nrf2-mediated antioxidant defense system, providing robust protection against insults.

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来源期刊
ACS Chemical Neuroscience
ACS Chemical Neuroscience BIOCHEMISTRY & MOLECULAR BIOLOGY-CHEMISTRY, MEDICINAL
CiteScore
9.20
自引率
4.00%
发文量
323
审稿时长
1 months
期刊介绍: ACS Chemical Neuroscience publishes high-quality research articles and reviews that showcase chemical, quantitative biological, biophysical and bioengineering approaches to the understanding of the nervous system and to the development of new treatments for neurological disorders. Research in the journal focuses on aspects of chemical neurobiology and bio-neurochemistry such as the following: Neurotransmitters and receptors Neuropharmaceuticals and therapeutics Neural development—Plasticity, and degeneration Chemical, physical, and computational methods in neuroscience Neuronal diseases—basis, detection, and treatment Mechanism of aging, learning, memory and behavior Pain and sensory processing Neurotoxins Neuroscience-inspired bioengineering Development of methods in chemical neurobiology Neuroimaging agents and technologies Animal models for central nervous system diseases Behavioral research
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