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March 19, 2026Proceedings of the National Academy of Sciences0 citations

Mutually exclusive alternative pre-mRNA splicing promotes adaptive metabolic stress signaling by JNK

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ALA. LeeAGAutumn GentzlerDFDeclan Fitzpatrick

Key Points

  • This research aims to explore the role of mutually exclusive JNK spliceoforms in metabolic stress signaling within hepatocytes.
  • Created mice with conditional pre-mRNA splicing of JNK exons 7a and 7b
  • Analyzed the function of JNK2 7b spliceoform in hepatic stress response
  • Investigated the regulation of circadian gene expression and RXRα phosphorylation
  • Identified JNK2 7b spliceoform as critical for hepatic metabolic stress response
  • Revealed independent regulation of circadian gene expression and RXRα phosphorylation on Ser 265
  • Demonstrated the importance of splicing in JNK-mediated adaptive response to metabolic stress

Abstract

The JUN NH 2 -terminal kinase (JNK) signal transduction pathway is activated during the hepatic metabolic stress response. The JNK1 and JNK2 pre-mRNAs expressed by hepatocytes exhibit mutually exclusive inclusion of exons 7a or 7b that encode a segment of the substrate binding site that is required for selective protein phosphorylation. We established mice with conditional inclusion of exons 7a or 7b to test the function of these JNK spliceoforms. We report that the JNK2 7b spliceoform plays a key role in the hepatic metabolic stress response. This function of JNK2 7b is mediated by coordinated mechanisms that independently regulate circadian gene expression and phosphorylation of Retinoid X Receptor α (RXRα) on Ser 265 . This analysis identifies an important role for JNK2 7b in the hepatic adaptive response to metabolic stress.

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Cite This Study

Lee et al. (2026) studied this question.

synapsesocial.com/papers/69bb92d1496e729e62980754https://doi.org/10.1073/pnas.2527162123
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