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Mitochondria Profoundly Influence Apolipoprotein E Biology
Alexander P Gabrielli1,2, Ian Weidling1,2, Amol Ranjan1
1University of Kansas Alzheimer's Disease Research Center, Kansas City, KS, USA.
Background:
Mitochondria can trigger Alzheimer's disease (AD)-associated molecular phenomena, but how mitochondria impact apolipoprotein E (APOE; apoE) is not well known.
Objective:
Consider whether and how mitochondrial biology influences APOE and apoE biology.
Methods:
We measured APOE expression in human SH-SY5Y neuronal cells with different forms of mitochondrial dysfunction including total, chronic mitochondrial DNA (mtDNA) depletion (ρ0 cells); acute, partial mtDNA depletion; and toxin-induced mitochondrial dysfunction. We further assessed intracellular and secreted apoE protein levels in the ρ0 cells and interrogated the impact of transcription factors and stress signaling pathways known to influence APOE expression.
Results:
SH-SY5Y ρ0 cells exhibited a 65-fold increase in APOE mRNA, an 8-fold increase in secreted apoE protein, and increased intracellular apoE protein. Other models of primary mitochondrial dysfunction including partial mtDNA-depletion, toxin-induced respiratory chain inhibition, and chemical-induced manipulations of the mitochondrial membrane potential similarly increased SH-SY5Y cell APOE mRNA. We explored potential mediators and found in the ρ0 cells knock-down of the C/EBPα and NFE2L2 (Nrf2) transcription factors reduced APOE mRNA. The activity of two mitogen-activated protein kinases, JNK and ERK, also strongly influenced ρ0 cell APOE mRNA levels.
Conclusion:
Primary mitochondrial dysfunction either directly or indirectly activates APOE expression in a neuronal cell model by altering transcription factors and stress signaling pathways. These studies demonstrate mitochondrial biology can influence the biology of the APOE gene and apoE protein, which are implicated in AD.
Insights
Mitochondrial dysfunction significantly increases apolipoprotein E (APOE) expression in neuronal cells. This finding reveals a link between mitochondrial health and APOE, a key factor in Alzheimer
Area of Science:
- Neuroscience
- Cell Biology
- Genetics
Background:
- Mitochondria play a role in Alzheimer's disease (AD) pathogenesis.
- The influence of mitochondrial dysfunction on apolipoprotein E (APOE) remains largely unexplored.
- APOE is a critical genetic risk factor for AD.
Purpose of the Study:
- To investigate the impact of mitochondrial dysfunction on APOE gene and protein expression.
- To elucidate the molecular mechanisms by which mitochondria influence APOE in neuronal cells.
Main Methods:
- Utilized human SH-SY5Y neuronal cells with induced mitochondrial dysfunction (mtDNA depletion, toxin exposure).
- Quantified APOE mRNA and apoE protein levels (intracellular and secreted).
- Assessed the role of transcription factors (C/EBPα, Nrf2) and signaling pathways (JNK, ERK).
Main Results:
- Mitochondrial dysfunction led to a substantial increase in APOE mRNA (65-fold) and apoE protein (8-fold increase in secreted).
- Various forms of mitochondrial impairment consistently elevated APOE mRNA.
- Knockdown of C/EBPα and Nrf2, and modulation of JNK/ERK activity, affected APOE mRNA levels in dysfunctional cells.
Conclusions:
- Primary mitochondrial dysfunction activates APOE expression in neuronal cells via transcription factors and stress pathways.
- Mitochondrial biology directly influences APOE gene and protein, relevant to Alzheimer's disease.
- Establishes a novel connection between mitochondrial integrity and APOE regulation in the context of AD.
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