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Identification of a Selective Pharmacologic IRE1/XBP1s Activator with Enhanced Tissue Exposure
Jie Sun1, Kyunga Lee2, Sergei Kutseikin1
1Department of Molecular and Cellular Biology, Scripps Research, La Jolla, California 92037, United States.
Abstract:
Activation of the IRE1/XBP1s signaling arm of the unfolded protein response (UPR) has emerged as a promising strategy to mitigate etiologically diverse diseases. Despite this promise, few compounds are available to selectively activate IRE1/XBP1s signaling to probe the biologic and therapeutic implications of this pathway in human disease. Recently, we identified the compound IXA4 as a highly selective activator of protective IRE1/XBP1s signaling. While IXA4 has proven useful for increasing IRE1/XBP1s signaling in cultured cells and mouse liver, the utility of this compound is restricted by its limited activity in other tissues. To broaden our ability to pharmacologically interrogate the impact of IRE1/XBP1s signaling in vivo, we sought to identify IRE1/XBP1s activators with greater tissue activity than IXA4. We reanalyzed 'hits' from the high throughput screen used to identify IXA4, selecting compounds from structural classes not previously pursued. We then performed global RNAseq to confirm that these compounds showed transcriptome-wide selectivity for IRE1/XBP1s activation. Functional profiling revealed compound IXA62 as a selective IRE1/XBP1s activator that reduced Aβ secretion from CHO7PA2 cells and enhanced glucose-stimulated insulin secretion from rat insulinoma cells, mimicking the effects of IXA4 in these assays. IXA62 robustly and selectively activated IRE1/XBP1s signaling in the liver of mice dosed compound intraperitoneally or orally. In treated mice, IXA62 showed broader tissue activity, relative to IXA4, inducing expression of IRE1/XBP1s target genes in additional tissues such as kidney and lung. Collectively, our results designate IXA62 as a selective IRE1/XBP1s signaling activating compound with enhanced tissue activity, which increases our ability to pharmacologically probe the biologic significance and potential therapeutic utility of enhancing adaptive IRE1/XBP1s signaling in vivo.
Insights
Researchers developed IXA62, a novel compound that selectively activates the IRE1/XBP1s pathway of the unfolded protein response (UPR). This new activator shows enhanced tissue activity compared to previous compounds, enabling broader investigation of UPR
Area of Science:
- Molecular Biology
- Pharmacology
- Cellular Biology
Background:
- The unfolded protein response (UPR) pathway, particularly the IRE1/XBP1s signaling arm, is a promising therapeutic target for various diseases.
- Existing selective activators of IRE1/XBP1s signaling, like IXA4, have limited tissue distribution, restricting their in vivo utility.
- There is a need for novel compounds with enhanced tissue penetration to effectively study and target the IRE1/XBP1s pathway in vivo.
Purpose of the Study:
- To identify and characterize novel selective activators of IRE1/XBP1s signaling with improved tissue activity compared to IXA4.
- To evaluate the efficacy of newly identified compounds in cellular and in vivo models.
- To expand the pharmacological tools available for interrogating the biological and therapeutic roles of IRE1/XBP1s signaling.
Main Methods:
- Re-analysis of high-throughput screening hits for compounds with novel structural classes.
- Global RNA sequencing (RNAseq) to confirm transcriptome-wide selectivity for IRE1/XBP1s activation.
- Functional profiling in cell-based assays (e.g., Aβ secretion, insulin secretion) and in vivo mouse models (oral and intraperitoneal dosing).
Main Results:
- Compound IXA62 was identified as a selective IRE1/XBP1s activator.
- IXA62 demonstrated efficacy in cellular assays, reducing Aβ secretion and enhancing insulin secretion.
- In vivo studies showed IXA62 robustly activated IRE1/XBP1s signaling in mouse liver and exhibited broader tissue activity (kidney, lung) compared to IXA4.
Conclusions:
- IXA62 is a potent and selective activator of IRE1/XBP1s signaling with enhanced tissue distribution.
- This compound represents a valuable pharmacological tool for in vivo studies of the IRE1/XBP1s pathway.
- IXA62's properties facilitate further investigation into the therapeutic potential of enhancing adaptive IRE1/XBP1s signaling in diverse diseases.

