Nuclear gene proximity and protein interactions shape transcript covariations in mammalian single cells

Single-cell RNA sequencing studies on gene co-expression patterns could yield important regulatory and functional insights, but have so far been limited by the confounding effects of differentiation and cell cycle. We apply a tailored experimental design that eliminates these confounders, and report...

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Veröffentlicht in:Nature communications 2020-10, Vol.11 (1), p.5445-5445, Article 5445
Hauptverfasser: Tarbier, Marcel, Mackowiak, Sebastian D., Frade, João, Catuara-Solarz, Silvina, Biryukova, Inna, Gelali, Eleni, Menéndez, Diego Bárcena, Zapata, Luis, Ossowski, Stephan, Bienko, Magda, Gallant, Caroline J., Friedländer, Marc R.
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Sprache:eng
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Zusammenfassung:Single-cell RNA sequencing studies on gene co-expression patterns could yield important regulatory and functional insights, but have so far been limited by the confounding effects of differentiation and cell cycle. We apply a tailored experimental design that eliminates these confounders, and report thousands of intrinsically covarying gene pairs in mouse embryonic stem cells. These covariations form a network with biological properties, outlining known and novel gene interactions. We provide the first evidence that miRNAs naturally induce transcriptome-wide covariations and compare the relative importance of nuclear organization, transcriptional and post-transcriptional regulation in defining covariations. We find that nuclear organization has the greatest impact, and that genes encoding for physically interacting proteins specifically tend to covary, suggesting importance for protein complex formation. Our results lend support to the concept of post-transcriptional RNA operons, but we further present evidence that nuclear proximity of genes may provide substantial functional regulation in mammalian single cells. Gene expression covariation can be studied by single-cell RNA sequencing. Here the authors analyze intrinsically covarying gene pairs by eliminating the confounding effects in single-cell experiments and observe covariation of proximal genes and miRNA-induced covariation of target mRNAs.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-020-19011-5