4.7 Article

Shared regulation and functional relevance of local gene co-expression revealed by single cell analysis

Journal

COMMUNICATIONS BIOLOGY
Volume 5, Issue 1, Pages -

Publisher

NATURE PORTFOLIO
DOI: 10.1038/s42003-022-03831-w

Keywords

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Funding

  1. Swiss National Science Foundation (SNSF) [PP00P3_176977]
  2. European Union [885998]
  3. Swiss National Science Foundation (SNF) [PP00P3_176977] Funding Source: Swiss National Science Foundation (SNF)
  4. Marie Curie Actions (MSCA) [885998] Funding Source: Marie Curie Actions (MSCA)

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This study utilizes single-cell datasets to identify gene co-expression in different human cell types. The results show that many co-expressed genes are functionally related and their co-expression is maintained at the protein level. Additionally, the study reveals that co-expressed gene pairs share regulatory elements, suggesting the importance of studying shared regulatory architecture between genes in understanding disease comorbidity.
Most human genes are co-expressed with a nearby gene. Previous studies have revealed this local gene co-expression to be widespread across chromosomes and across dozens of tissues. Yet, so far these studies used bulk RNA-seq, averaging gene expression measurements across millions of cells, thus being unclear if this co-expression stems from transcription events in single cells. Here, we leverage single cell datasets in >85 individuals to identify gene co-expression across cells, unbiased by cell-type heterogeneity and benefiting from the co-occurrence of transcription events in single cells. We discover >3800 co-expressed gene pairs in two human cell types, induced pluripotent stem cells (iPSCs) and lymphoblastoid cell lines (LCLs) and (i) compare single cell to bulk RNA-seq in identifying local gene co-expression, (ii) show that many co-expressed genes - but not the majority - are composed of functionally related genes and (iii) using proteomics data, provide evidence that their co-expression is maintained up to the protein level. Finally, using single cell RNA-sequencing (scRNA-seq) and single cell ATAC-sequencing (scATAC-seq) data for the same single cells, we identify gene-enhancer associations and reveal that >95% of co-expressed gene pairs share regulatory elements. These results elucidate the potential reasons for co-expression in single cell gene regulatory networks and warrant a deeper study of shared regulatory elements, in view of explaining disease comorbidity due to affecting several genes. Our in-depth view of local gene co-expression and regulatory element co-activity advances our understanding of the shared regulatory architecture between genes. Using single-cell data from cell lines, the co-expression of genes and co-activity of regulatory elements is analyzed, providing insight into shared architecture and regulation between genes.

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