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Updated: Aug 22, 2026

Analyzing Supercomplexes of the Mitochondrial Electron Transport Chain with Native Electrophoresis, In-gel Assays, and Electroelution
Published on: June 1, 2017
GRIM-19, a cell death regulatory protein, is essential for assembly and function of mitochondrial complex I
Guochang Huang1, Hao Lu, Aijun Hao
1Signal Transduction Laboratory, Institute of Molecular and Cell Biology, Proteos Building, Room 6-19B, 61 Biopolis Dr., Singapore 138673, Republic of Singapore.
Abstract:
Mitochondria play essential roles in cellular energy production via the oxidative phosphorylation system (OXPHOS) consisting of five multiprotein complexes and also in the initiation of apoptosis. NADH:ubiquinone oxidoreductase (complex I) is the largest complex that catalyzes the first step of electron transfer in the OXPHOS system. GRIM-19 was originally identified as a nuclear protein with apoptotic nature in interferon (IFN)- and all-trans-retinoic acid (RA)-induced tumor cells. To reveal its biological role, we generated mice deficient in GRIM-19 by gene targeting. Homologous deletion of GRIM-19 causes embryonic lethality at embryonic day 9.5. GRIM-19(-/-) blastocysts show retarded growth in vitro and, strikingly, display abnormal mitochondrial structure, morphology, and cellular distribution. We reexamined the cellular localization of GRIM-19 in various cell types and found its primary localization in the mitochondria. Furthermore, GRIM-19 is detected in the native form of mitochondrial complex I. Finally, we show that elimination of GRIM-19 destroys the assembly and electron transfer activity of complex I and also influences the other complexes in the mitochondrial respiratory chain. Our result demonstrates that GRIM-19, a gene product with a specific role in IFN-RA-induced cell death, is a functional component of mitochondrial complex I and is essential for early embryonic development.
Insights
GRIM-19 is a crucial component of mitochondrial complex I, essential for cellular energy production and early embryonic development. Its absence leads to abnormal mitochondria and embryonic lethality.
Area of Science:
- Mitochondrial biology
- Cellular respiration
- Developmental biology
Background:
- Mitochondria are vital for energy production through oxidative phosphorylation (OXPHOS) and apoptosis.
- NADH:ubiquinone oxidoreductase (complex I) is the largest OXPHOS complex, initiating electron transfer.
- GRIM-19 was initially identified as a nuclear protein involved in apoptosis.
Purpose of the Study:
- To investigate the biological role of GRIM-19.
- To determine the function and localization of GRIM-19 within the cell.
Main Methods:
- Gene targeting to create GRIM-19 deficient mice.
- Analysis of GRIM-19(-/-) blastocysts for growth, mitochondrial structure, and morphology.
- Biochemical assays to assess mitochondrial complex I assembly and activity.
Main Results:
- GRIM-19 deficiency results in embryonic lethality at day 9.5.
- GRIM-19(-/-) blastocysts exhibit impaired growth and abnormal mitochondrial structure.
- GRIM-19 is localized in mitochondria and is a component of complex I.
- Elimination of GRIM-19 disrupts complex I assembly and electron transfer activity.
Conclusions:
- GRIM-19 is a functional component of mitochondrial complex I.
- GRIM-19 is essential for normal mitochondrial function and early embryonic development.
- GRIM-19 plays a critical role in cellular energy metabolism.
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