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An Optimized Protocol to Analyze Glycolysis and Mitochondrial Respiration in Lymphocytes
Published on: November 21, 2016
Amyloid precursor protein interacts with the mitochondrial phosphatase PGAM5 and regulates mitochondrial respiration
Kriti Shukla1,2, Zhi Zhang3, Kendra S Plafker1
1Aging & Metabolism Research Program, Oklahoma Medical Research Foundation, Oklahoma City, OK, 73104, USA.
Abstract:
Amyloid Precursor Protein (APP) has been reported to partially localize to mitochondria, and mitochondrial dysfunction is a key feature of Alzheimer's disease; however, the mechanisms linking APP to mitochondrial functions remain incompletely defined. In this study, we identified an interaction between APP and phosphoglycerate mutase family member 5 (PGAM5), a mitochondrial protein phosphatase. We confirmed their endogenous interaction in mouse brain tissue and determined that APP and PGAM5 are both present at mitochondria-ER contact sites (MERCS) and. Using in vitro binding assays, we demonstrate a direct interaction between the linker region of APP and a region of PGAM5 that includes the Kelch-like ECH-associated protein 1 (Keap-1) binding domain. PGAM5 is known to anchor a portion of Nuclear factor erythroid 2 p45-related factor 2 (Nrf2) through Keap1 at the outer mitochondrial membrane and regulates mitochondrial respiration and stress responses. We found that the Nrf2-regulated genes Hmox1 (Heme oxygenase-1) and Nqo1 (NADH:quinone oxidoreductase 1), which are involved in mitochondrial respiration, are downregulated in APP KO astrocytes. Accordingly, mitochondria isolated from the brains of APP knockout (KO) mice have impaired substrate-specific respiration and electron transport chain (ETC) function. Together, these findings suggest that APP supports mitochondrial respiration by binding to PGAM5 and modulating Keap1-Nrf2 signaling.
Insights
Amyloid Precursor Protein (APP) loss impairs brain mitochondrial respiration. APP interacts with PGAM5 to regulate Nrf2 signaling, crucial for mitochondrial function and linked to Alzheimer's disease.
Area of Science:
- Neuroscience
- Cell Biology
- Mitochondrial Biology
Background:
- Mitochondrial dysfunction is implicated in Alzheimer's disease.
- Amyloid Precursor Protein (APP) is found in mitochondria, but its role is unclear.
Purpose of the Study:
- To elucidate the mechanisms linking APP to mitochondrial function.
- To investigate the role of APP in regulating mitochondrial respiration.
Main Methods:
- Mitochondrial respiration assays in APP knockout mice.
- Identification of protein interactions using co-localization and binding assays.
- Analysis of Nrf2-regulated gene expression.
Main Results:
- APP knockout mice exhibit impaired mitochondrial respiration.
- A novel interaction between APP and PGAM5 at mitochondria-ER contact sites was identified.
- APP modulates PGAM5-Keap1-Nrf2 signaling, affecting mitochondrial respiratory genes.
Conclusions:
- APP is essential for maintaining mitochondrial respiration.
- APP interacts with PGAM5 to regulate Nrf2-dependent mitochondrial gene expression.
- This provides a mechanistic link between APP deficiency and mitochondrial dysfunction in Alzheimer's disease.
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