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APOEε3/ε4 and APOEε4/ε4 genotypes drive unique gene signatures in the cortex of young mice

Foley, K. E.; Garceau, D. T.; Kotredes, K. P.; Carter, G. W.; Sasner, M.; Howell, G. R.

2020-10-28 genomics
10.1101/2020.10.28.359422 bioRxiv
Show abstract

BackgroundRestrictions on mouse models have significantly impacted research towards understanding the most common genotype contributing to dementia in the human population - APOE{varepsilon}3/{varepsilon}4. To address this, as part of MODEL-AD, we created new versions of humanized APOE{varepsilon}4 and APOE{varepsilon}3 mice on a C57BL/6J background that allow for unrestricted distribution and breeding. MethodsTo determine similarities and differences between APOE{varepsilon}3/{varepsilon}4 and APOE{varepsilon}4/{varepsilon}4 risk genotypes, we analyzed peripheral lipid concentrations as well as performed unbiased transcriptional profiling of the cortex at two and four months of age, comparing APOE{varepsilon}3/{varepsilon}4 and APOE{varepsilon}4/{varepsilon}4 to the reference APOE{varepsilon}3/{varepsilon}3. To further compare APOE genotypes, cohorts of APOE{varepsilon}3/{varepsilon}3, APOE{varepsilon}3/{varepsilon}4, and APOE{varepsilon}4/{varepsilon}4 mice were exercised by voluntary running from 1 month to 4 months of age. ResultsCholesterol composition was significantly influenced by APOE genotype as early as 2 months, while triglycerides were affected by APOE genotype at 4 months. Importantly, RNA-sequencing of the cortex followed by linear modeling or weighted gene co-expression network analysis (WGCNA) revealed that the APOE{varepsilon}3/{varepsilon}4 genotype showed unique transcriptomic signatures to that of APOE{varepsilon}4/{varepsilon}4. Functional enrichment of the APOE{varepsilon}3/{varepsilon}4, but not APOE{varepsilon}3/{varepsilon}4 genotype, revealed sulfur and heparin binding as significant terms at 2 months, and extracellular matrix and blood coagulation at 4 months. Further, cell specific contributions of significant genes identified endothelial cells as overrepresented in the APOE{varepsilon}3/{varepsilon}4 but not APOE{varepsilon}4/{varepsilon}4 genotype. WGCNA analysis confirmed findings from linear modeling but also predicted that running at a young age affects myelination and gliogenesis across APOE genotypes. ConclusionsIn summary, APOE{varepsilon}3/{varepsilon}4 genotype-specific effects were observed in cortical transcriptional profiles, suggesting therapies aimed at modifying APOE biology to treat dementias may need to be targeted to specific APOE genotypes.

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