Age-associated increases in inter-individual gene expression variability across human tissues
Bartz, J.; Rivera, P.; Niedernhofer, L. J.; Zhang, L.; Dong, X.
Show abstract
Aging involves progressive physiological decline, yet the underlying transcriptomic patterns remain poorly understood. Although differentially expressed genes (DEGs) have been the primary focus of previous studies, here we investigate differentially variable genes (DVGs) using a novel Gene Stability Score (GSS). In 30 tissue types from nearly 1,000 individuals in the Genotype-Tissue Expression (GTEx) project, age- and sex-related DVGs account for approximately 15% of overall expression variability between samples of the same tissue, with age-related DVGs specifically contributing 7.7%. We further show that DEGs and DVGs affect distinct biological pathways, and that inter-individual instability is significantly correlated with cell-to-cell transcriptional noise. Moreover, gene regulatory network analysis reveals that this variability is not random but is shaped by local network architecture. Finally, we identify robust reference genes, including TBP, PUM1, and TMEM199, for RT-qPCR experiments in studying age-related gene expression changes in humans. Together, our findings suggest that aging involves both coordinated transcriptional programs and increased stochasticity across individuals and cells.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Pan-tissue Transcriptome Analysis Reveals Sex-dimorphic Human Aging 97%
- The Neuron-specific IIS/FOXO Transcriptome in Aged Animals Reveals Regulatory Mechanisms of Neuronal and Cognitive Aging 97%
- Microglia aging in the hippocampus advances through intermediate states that drive activation and cognitive decline 96%
Similar papers in this journal
- Exercise is associated with younger methylome and transcriptome profiles in human skeletal muscle 97%
- Transcriptional activation of Jun and Fos members of the AP-1 complex is a conserved signature of immune aging that contributes to inflammaging 96%
- Age-associated transcriptomic and epigenetic alterations in mouse hippocampus 96%
Similar papers in this journal
- Single-Cell Epigenomics Uncovers Heterochromatin Instability and Transcription Factor Dysfunction during Mouse Brain Aging 96%
- Defining the age-dependent and tissue-specific circadian transcriptome in male mice 96%
- Spatiotemporal analysis of gene expression in the human dentate gyrus reveals age-associated changes in cellular maturation and neuroinflammation 96%
"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.