category
bioRxiv
date
Feb 18, 2026
slug
status
Published
summary
1. 首次发现SLC33A1在内质网氧化还原稳态中的生理功能;2. 开发首个SLC33A1药理学抑制剂IXA4;3. 揭示IXA4通过抑制SLC33A1导致谷胱甘肽积累并激活IRE1/XBP1s信号通路的分子机制;4. 证明IXA4对KEAP1缺陷型肺癌细胞的选择性杀伤作用。
tags
蛋白质组学
基因编辑
type
Post
📄 原文题目
Pharmacological Inhibition of SLC33A1 Promotes Endoplasmic Reticulum Hyperoxidation and Induces Adaptive IRE1/XBP1s Signaling
🔗 原文链接
💡 AI 核心解读
1. 首次发现SLC33A1在内质网氧化还原稳态中的生理功能;2. 开发首个SLC33A1药理学抑制剂IXA4;3. 揭示IXA4通过抑制SLC33A1导致谷胱甘肽积累并激活IRE1/XBP1s信号通路的分子机制;4. 证明IXA4对KEAP1缺陷型肺癌细胞的选择性杀伤作用。
📝 英文原版摘要
The endoplasmic reticulum (ER) transporter solute carrier family 33 member 1 (SLC33A1) has emerged as an attractive therapeutic target in etiologically diverse diseases, ranging from lung cancer to neurodegenerative disorders. Yet, no pharmacologic SLC33A1 modulators have been described. Here, we show that the small molecule IXA4, a highly selective activator of the adaptive IRE1/XBP1s signaling arm of the unfolded protein response (UPR), binds to SLC33A1 and inhibits its activity. Genetic depletion of SLC33A1 phenocopies the selective induction of IRE1/XBP1s signaling brought about by IXA4 treatment. Chemoproteomic analyses and cryo-electron microscopy show that IXA4 binds SLC33A1 within the central channel to inhibit transport of its substrate metabolite(s). Binding of IXA4 to SLC33A1 leads to the accumulation of oxidized glutathione within the ER, hyperoxidizing the ER lumen and inducing activation of adaptive IRE1/XBP1s signaling. Consistent with this function, we find that pharmacologic inhibition of SLC33A1 with IXA4 selectively reduces viability of KEAP1-deficient lung adenocarcinoma cells that have elevated levels of glutathione, mimicking the sensitivity of these cells to genetic deletion of SLC33A1. Our work demonstrates a new physiologic role of SLC33A1 in regulation of ER redox homeostasis and designates IXA4 as a pharmacologic inhibitor of SLC33A1 that can be used to evaluate the biological impact and therapeutic utility of SLC33A1 inhibition in homeostasis and in disease.
- 作者:NotionNext
- 链接:https://tangly1024.com/article/30b48bd6-1f96-813a-a7da-dcb4220484c6
- 声明:本文采用 CC BY-NC-SA 4.0 许可协议,转载请注明出处。
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