A Reproducibility Focused Meta-Analysis Method for Single-Cell Transcriptomic Case-Control Studies Uncovers Robust Differentially Expressed Genes
Nakatsuka, N. J.; Adler, D.; Jiang, L.; Hartman, A.; Cheng, E.; Klann, E.; Satija, R.
Show abstract
We assessed the reproducibility of differentially expressed genes (DEGs) in previously published Alzheimers (AD), Parkinsons (PD), Huntingtons (HD), Schizophrenia (SCZ), and COVID-19 scRNA-seq studies. While transcriptional scores from DEGs of individual PD, HD, and COVID-19 datasets had moderate predictive power for case-control status of other datasets, genes from individual AD and SCZ datasets had poor predictive power. We developed a non-parametric meta-analysis method, SumRank, based on reproducibility of relative differential expression ranks across datasets, and found DEGs with improved predictive power. By multiple metrics, specificity and sensitivity of these genes were substantially higher than those discovered by dataset merging and inverse variance weighted p-value aggregation methods and had significant enrichment in snATAC-seq peaks and human disease gene associations. The DEGs revealed known and novel biological pathways, such as up-regulation of chaperone-mediated protein processing in PD glia and lipid transport in AD and PD microglia, and down-regulation of glutamatergic processes in AD astrocytes and glutamatergic neurons and synaptic processing and neuron projection genes in HD FOXP2 neurons. We find 56 DEGs shared amongst AD, PD, and HD, and validate BCAT1 as down-regulated in AD mouse oligodendrocytes. Lastly, we evaluate factors influencing reproducibility of individual studies as a prospective guide for experimental design.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A public resource of single cell transcriptomes and multiscale networks from persons with and without Alzheimer's disease 97%
- Molecular estimation of neurodegeneration pseudotime in older brains 97%
- DNA methylation signatures of Alzheimer's disease neuropathology in the cortex are primarily driven by variation in non-neuronal cell-types 97%
Similar papers in this journal
- Cell-type specific inference from bulk RNA-sequencing data by integrating single cell reference profiles via EPIC-unmix 95%
- Local genetic correlation analysis reveals heterogeneous etiologic sharing of complex traits 94%
- Pluripotent stem cell derived models of neurological diseases reveal early transcriptional heterogeneity 93%
Similar papers in this journal
- Large meta-analysis of genome-wide association studies expands knowledge of the genetic etiology of Alzheimer’s disease and highlights potential translational opportunities 97%
- Atlas of genetic effects in human microglia transcriptome across brain regions, aging and disease pathologies 97%
- Common and rare variant association analyses in Amyotrophic Lateral Sclerosis identify 15 risk loci with distinct genetic architectures and neuron-specific biology 96%
Similar papers in this journal
- Gene co-expression network analysis in human spinal cord highlights mechanisms underlying amyotrophic lateral sclerosis susceptibility 95%
- Manifestations of genetic risk for Alzheimer's Disease in the blood: a cross-sectional multi-omic analysis in healthy adults aged 18-90+ 94%
- Modeling of mitochondrial genetic polymorphisms reveals induction of heteroplasmy by pleiotropic disease locus MT:10398A>G 94%
Similar papers in this journal
- Large-Scale Deep Multi-Layer Analysis of Alzheimer's Disease Brain Reveals Strong Proteomic Disease-Related Changes Not Observed at the RNA Level 96%
- Molecular characterization of selectively vulnerable neurons in Alzheimer's Disease 96%
- Cell-type specific cis-eQTLs in eight brain cell-types identifies novel risk genes for human brain disorders 95%
"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.