Adulthood depletion of Integrator extends lifespan and healthspan via defective pre-mRNA processing
Slade, L.; Kus, K.; Jiang, Y.; Cabello, J.; Filipovic, M.; Sarkies, P.; Vasiljeva, L.
Show abstract
Identifying strategies to mitigate age-related physiological decline remains a central challenge. During ageing, the transcriptome undergoes extensive remodelling, but how this affects organismal health and lifespan is not well understood. The Integrator complex plays a central role in RNA polymerase II transcription and RNA 3' end processing. Surprisingly, we find that depletion of most Integrator subunits specifically in adults extends lifespan and healthspan in the nematode C. elegans. We show that loss of the catalytic subunit INTS-11 disrupts 3' end formation of small nuclear and spliced leader RNAs, impairing trans-splicing and promoting outron retention in a subset of transcripts enriched for spliceosomal and nucleocytoplasmic transport genes. These RNA-processing defects lead to altered levels of endogenous siRNAs, which are required for the longevity and healthspan benefits of INTS-11 depletion. In parallel, outron retention disrupts nuclear-encoded mitochondrial gene expression and protein production, inducing mitochondrial dysfunction and promoting lifespan extension. We also demonstrate that loss of INTS-11 perturbs transcription elongation at genes where Integrator is present at promoters, and that upregulation of enhancer elements within intragenic regions can affect the expression and isoform usage of nearby genes. Together, our findings identify Integrator as a key upstream regulator of non-coding RNA transcription, which in turn impacts protein-coding gene expression and mitochondrial function to shape the ageing process.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Toxic Y chromosome: increased repeat expression and age-associated heterochromatin loss in male Drosophila with a young Y chromosome 95%
- R-loops and regulatory changes in chronologically ageing fission yeast cells drive non-random patterns of genome rearrangements 94%
- Synaptonemal Complex dimerization regulates chromosome alignment and crossover patterning in meiosis 93%
Similar papers in this journal
- The chromatin factors SET-26 and HCF-1 oppose the histone deacetylase HDA-1 in longevity and gene regulation in C. elegans 94%
- The 18S rRNA Methyltransferase DIMT-1 Regulates Lifespan in the Germline Later in Life 94%
- tRNA-derived RNA processing in sperm transmits non-genetically inherited phenotypes to offspring in C. elegans 93%
Similar papers in this journal
- Regulation of defective mitochondrial DNA accumulation and transmission in C. elegans by the programmed cell death and aging pathways 94%
- Independent regulation of mtDNA quantity and quality resets the mitochondrial genome in C. elegans primordial germ cells 94%
- Homeodomain-interacting protein kinase maintains neuronal homeostasis during normal Caenorhabditis elegans aging and systemically regulates longevity from serotonergic and GABAergic neurons 94%
Similar papers in this journal
Similar papers in this journal
- A mutational gradient drives somatic mutation accumulation in mitochondrial DNA and influences germline polymorphisms and genome composition 92%
- Screening by deep sequencing reveals mediators of miRNA tailing in C. elegans 92%
- U6 snRNA m6A modification is required for accurate and efficient cis- and trans-splicing of C. elegans mRNAs 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.