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Transcription readthrough is prevalent in healthy human tissues and associated with inherent genomic features. | LitMetric

Transcription readthrough is prevalent in healthy human tissues and associated with inherent genomic features.

Commun Biol

Associate Laboratory i4HB - Institute for Health and Bioeconomy, NOVA School of Science and Technology, Universidade NOVA de Lisboa, 2829-516, Caparica, Portugal.

Published: January 2024

AI Article Synopsis

  • Transcription termination is essential for creating proper mRNAs and proteins, but under stress, the transcription process can ignore stop signals, leading to "readthrough" transcripts that extend beyond gene ends.
  • A study examining nearly 3000 human transcriptome profiles revealed that 34% of protein-coding genes produce these readthrough transcripts, especially in regions with less transcription activity, inefficient splicing, and more accessible chromatin.
  • The findings suggest that these additional transcripts may act as "miRNA sponges," highlighting that transcription readthrough is common in both unhealthy and healthy tissues and could play a significant role in regulating cellular functions.

Article Abstract

Transcription termination is a crucial step in the production of conforming mRNAs and functional proteins. Under cellular stress conditions, the transcription machinery fails to identify the termination site and continues transcribing beyond gene boundaries, a phenomenon designated as transcription readthrough. However, the prevalence and impact of this phenomenon in healthy human tissues remain unexplored. Here, we assessed transcription readthrough in almost 3000 transcriptome profiles representing 23 human tissues and found that 34% of the expressed protein-coding genes produced readthrough transcripts. The production of readthrough transcripts was restricted in genomic regions with high transcriptional activity and was associated with inefficient splicing and increased chromatin accessibility in terminal regions. In addition, we showed that these transcripts contained several binding sites for the same miRNA, unravelling a potential role as miRNA sponges. Overall, this work provides evidence that transcription readthrough is pervasive and non-stochastic, not only in abnormal conditions but also in healthy tissues. This suggests a potential role for such transcripts in modulating normal cellular functions.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10789751PMC
http://dx.doi.org/10.1038/s42003-024-05779-5DOI Listing

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