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Heritable transcriptional defects from aberrations of nuclear architecture. | LitMetric

AI Article Synopsis

  • Transcriptional differences in cancer cells are influenced by changes in the epigenetic state of chromatin, impacting tumor evolution and drug resistance.
  • Micronuclei and chromosome bridges, common in cancer, can lead to lasting reductions in gene expression and change how genes are regulated even after returning to normal cells.
  • These changes may occur due to long-lasting DNA damage, linking epigenetic shifts in gene expression to chromosomal instability and issues in nuclear structure.

Article Abstract

Transcriptional heterogeneity due to plasticity of the epigenetic state of chromatin contributes to tumour evolution, metastasis and drug resistance. However, the mechanisms that cause this epigenetic variation are incompletely understood. Here we identify micronuclei and chromosome bridges, aberrations in the nucleus common in cancer, as sources of heritable transcriptional suppression. Using a combination of approaches, including long-term live-cell imaging and same-cell single-cell RNA sequencing (Look-Seq2), we identified reductions in gene expression in chromosomes from micronuclei. With heterogeneous penetrance, these changes in gene expression can be heritable even after the chromosome from the micronucleus has been re-incorporated into a normal daughter cell nucleus. Concomitantly, micronuclear chromosomes acquire aberrant epigenetic chromatin marks. These defects may persist as variably reduced chromatin accessibility and reduced gene expression after clonal expansion from single cells. Persistent transcriptional repression is strongly associated with, and may be explained by, markedly long-lived DNA damage. Epigenetic alterations in transcription may therefore be inherently coupled to chromosomal instability and aberrations in nuclear architecture.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10322708PMC
http://dx.doi.org/10.1038/s41586-023-06157-7DOI Listing

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