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Innate immune stress pathway activation underlies heterochromatin dysfunction pathology

Created on 27 Sep 2026

Authors

Pradhan, R., Townley, A. F., Protasio, A. V., Danac, J. M., Dong, Y., Fang, Y., Appert, A., Carelli, F. N., Han, S., Vaikkinen, H., Tchasovnikarova, I., Ahringer, J.

Abstract

Heterochromatin loss disrupts nuclear architecture, gene regulation and repetitive element silencing, and is associated with diverse human diseases. However, mechanisms linking heterochromatin dysfunction to pathological phenotypes remain unclear. Using genetic interaction screening and genomic analyses in C. elegans, we identify secondary activation of the Intracellular Pathogen Response (IPR), an innate immune stress pathway, as a major contributor to heterochromatin mutant phenotypes. Constitutive IPR activation phenocopies slow growth and indirect transcriptional changes observed in these mutants. Depletion of genetic enhancers further increased, whereas suppressor RNAi attenuated IPR activation, with direct heterochromatin targets remaining substantially deregulated. Notably, many suppressors encode active chromatin components, and mild reduction of RNA polymerase II activity ameliorates growth defects in C. elegans HP1 mutants and human HP1-deficient cells. Our findings reveal secondary stress response activation as an important mechanism linking heterochromatin dysfunction to pathology and identify transcriptional dampening as a potential therapeutic strategy for mitigating these effects.

Preprint server: bioRxiv
The authors list and abstract were imported from bioRxiv on 27 Sep 2026.

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