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Updated: Sep 14, 2025

Simultaneous Measurement of Mitochondrial Calcium and Mitochondrial Membrane Potential in Live Cells by Fluorescent Microscopy
Published on: January 24, 2017
TMEM65 functions as the mitochondrial Na+/Ca2+ exchanger
Jim Lu Zhang1,2, Yu-Chen Chang3,4, Po-Hsuan Lai3,4
1Department of Molecular and Cellular Physiology, Stanford University School of Medicine, Stanford, CA, USA.
The protein TMEM65 is essential for mitochondrial sodium-calcium exchange (mito-NCX), regulating cellular calcium. TMEM65
Area of Science:
- Mitochondrial biology
- Ion transport
- Cellular signaling
Background:
- Mitochondria regulate intracellular calcium (Ca2+) via Na+/Ca2+ exchange (mito-NCX).
- The protein TMEM65 was suggested to be essential for mito-NCX, but its function was unclear.
- Mitochondrial Ca2+ homeostasis is crucial for cellular function and disease pathogenesis.
Purpose of the Study:
- To elucidate the role and mechanism of TMEM65 in mitochondrial Na+/Ca2+ exchange.
- To establish TMEM65 as the functional protein mediating mito-NCX.
- To identify TMEM65 as a potential therapeutic target for mitochondrial Ca2+ dysregulation.
Main Methods:
- TMEM65 depletion studies in cells.
- Biochemical analyses of TMEM65 protein structure and function.
- Heterologous expression of TMEM65 and liposome reconstitution assays.
- Characterization of TMEM65 interaction with the inhibitor CGP-37157.
Main Results:
- TMEM65 depletion significantly impairs mito-NCX activity.
- TMEM65 forms a functional homodimer with ion-coordinating residues.
- TMEM65 expression confers Na+/Ca2+ exchange activity in heterologous systems.
- Purified TMEM65 reconstituted in liposomes exhibits mito-NCX properties.
- The binding site for the inhibitor CGP-37157 was identified.
- TMEM65 deletion leads to elevated mitochondrial Ca2+ and increased mitochondrial permeability.
Conclusions:
- TMEM65 is definitively identified as the protein responsible for mitochondrial Na+/Ca2+ exchange (mito-NCX).
- TMEM65 function is critical for maintaining mitochondrial Ca2+ homeostasis.
- TMEM65 represents a novel therapeutic target for conditions involving aberrant mitochondrial Ca2+ signaling.
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