Chimpanzee and human ApoE isoforms differ in the stimulation of neurite differentiation consistent with structural predictions with relevance to brain development and aging
Thorwald, M. A.; Cacciottolo, M.; Hou, X.; Morgan, T. E.; Finch, C. E.
Show abstract
BackgroundAmong anthropoids, humans uniquely possess ApoE isoforms that modulate Alzheimers disease (AD) risk and brain aging. While chimpanzee and human ApoE4 share R112 and R158, chimps do not exhibit advanced AD. A key difference is T61 in chimps versus R61 in humans, structurally resembling ApoE3. ObjectiveWe examined how astrocyte-derived ApoE isoforms impact neuronal morphology and used structural modeling to explore functional divergence. MethodsNeonatal rat hippocampal neurons were cultured with astrocyte-conditioned media (ACM) from mice expressing human ApoE3, ApoE4, or chimpanzee ApoE. Neuronal outgrowth was quantified after 72 hours. ResultsChimpanzee ACM increased neurite number by 30% over human ApoE isoforms. However, chimpanzee ACM resembled ApoE4 functionally, producing 40% shorter neurites and spines. Structural modeling supported greater similarity to ApoE4. ConclusionsChimpanzee ApoE is structurally and functionally more similar to ApoE4 than ApoE3, revealing evolutionary distinctions relevant to AD risk and neurodevelopment.
Matching journals
The top 13 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Glycated alpha-synuclein assemblies cause distinct Parkinsons disease pathogenesis in mice 91%
- Fast purification of recombinant monomeric amyloid-β from E. coli and amyloid-β-mCherry aggregates from mammalian cells 91%
- Divergent age-dependent conformational rearrangement within Aβ-amyloid deposits in APP23, APPPS1, and AppNL-F mice 91%