Beyond the mean: genetic control of gene expression fidelity and dispersion
Gilad, Y.; Jamison, B.; Chen, A.; McIntire, E.; He, X.
Show abstract
For decades, molecular biologists have interpreted gene regulation through measurements of mean gene expression, because they could not resolve regulatory variation among individual cells. The advent of single-cell genomics has now made that variation measurable, revealing pervasive differences in gene expression among apparently similar cells. Whether this variation mainly reflects stochastic noise or an informative regulatory property remains unclear. Here we show that mean-corrected gene expression dispersion is a reproducible and biologically structured feature of gene regulation that reflects regulatory fidelity. In heterogeneous differentiated cardiac cultures, genes with low dispersion are shared across cell types, enriched for housekeeping functions, depleted for expression quantitative trait loci, and more highly connected in transcriptional and protein interaction networks. In a comparative single-cell system spanning human, chimpanzee, and allotetraploid cells, a substantial subset of interspecies differences in regulatory dispersion persists in a shared trans environment, indicating that gene expression fidelity is often regulated in cis. Our findings establish gene expression dispersion as a genetically encoded dimension of gene regulation that is distinct from mean expression, and places dispersion along a fidelity-plasticity axis with implications for development, disease, and threshold-dependent cellular phenotypes.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Single-cell genomics improves the discovery of risk variants and genes of Atrial Fibrillation 97%
- Gapped-kmer sequence modeling robustly identifies regulatory vocabularies and distal enhancers conserved between evolutionarily distant mammals 96%
- Extrusion fountains are hallmarks of chromosome organization emerging upon zygotic genome activation 96%
Similar papers in this journal
- Transcriptional kinetics and molecular functions of long non-coding RNAs 97%
- Boundary stacking interactions enable cross-TAD enhancer-promoter communication during limb development 96%
- Dynamic network-guided CRISPRi screen reveals CTCF loop-constrained nonlinear enhancer-gene regulatory activity in cell state transitions 96%
Similar papers in this journal
- Gene regulatory network inference from CRISPR perturbations in primary CD4+ T cells elucidates the genomic basis of immune disease 96%
- Impact of disease-associated chromatin accessibility QTLs across immune cell types and contexts 96%
- Robust enhancer-gene regulation identified by single-cell transcriptomes and epigenomes 96%
Similar papers in this journal
"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.