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.

ACS Chemical Biology
|April 15, 2025
PubMed

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.