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Published on: June 25, 2013
Mre11 is expressed in mammalian mitochondria where it binds to mitochondrial DNA
Natalia I Dmitrieva1, Daniela Malide, Maurice B Burg
1Laboratory of Kidney and Electrolyte Metabolism,National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, Maryland, USA. dmitrien@nhlbi.nih.gov
Abstract:
Mre11 is a critical participant in upkeep of nuclear DNA, its repair, replication, meiosis, and maintenance of telomeres. The upkeep of mitochondrial DNA (mtDNA) is less well characterized, and whether Mre11 participates has been unknown. We previously found that high NaCl causes some of the Mre11 to leave the nucleus, but we did not then attempt to localize it within the cytoplasm. In the present studies, we find Mre11 in mitochondria isolated from primary renal cells and show that the amount of Mre11 in mitochondria increases with elevation of extracellular NaCl. We confirm the presence of Mre11 in the mitochondria of cells by confocal microscopy and show that some of the Mre11 colocalizes with mtDNA. Furthermore, crosslinking of Mre11 to DNA followed by Mre11 immunoprecipitation directly demonstrates that some Mre11 binds to mtDNA. Abundant Mre11 is also present in tissue sections from normal mouse kidneys, colocalized with mitochondria of proximal tubule and thick ascending limb cells. To explore whether distribution of Mre11 changes with cell differentiation, we used an experimental model of tubule formation by culturing primary kidney cells in Matrigel matrix. In nondifferentiated cells, Mre11 is mostly in the nucleus, but it becomes mostly cytoplasmic upon cell differentiation. We conclude that Mre11 is present in mitochondria where it binds to mtDNA and that the amount in mitochondria varies depending on cellular stress and differentiation. Our results suggest a role for Mre11 in the maintenance of genome integrity in mitochondria in addition to its previously known role in maintenance of nuclear DNA.
Insights
Mre11 protein is found in mitochondria, binding to mitochondrial DNA (mtDNA). Its mitochondrial levels change with cellular stress and differentiation, suggesting a role in mtDNA maintenance.
Area of Science:
- Cell Biology
- Molecular Biology
- Genetics
Background:
- Mre11 protein is essential for nuclear DNA repair, replication, and telomere maintenance.
- The role of Mre11 in mitochondrial DNA (mtDNA) upkeep is largely unknown.
- Previous work showed Mre11 relocates from the nucleus under high salt conditions.
Purpose of the Study:
- To investigate the presence and function of Mre11 in mitochondria.
- To determine if Mre11 interacts with mtDNA.
- To examine Mre11 distribution changes during cell differentiation and stress.
Main Methods:
- Isolation of mitochondria from primary renal cells.
- Confocal microscopy to visualize Mre11 localization and co-localization with mtDNA.
- Mre11-DNA crosslinking followed by immunoprecipitation to confirm mtDNA binding.
- Analysis of Mre11 distribution in mouse kidney tissue sections.
- In vitro tubule formation assay to study Mre11 in differentiating kidney cells.
Main Results:
- Mre11 was detected in isolated mitochondria and co-localized with mtDNA.
- Mitochondrial Mre11 levels increased with elevated extracellular NaCl (cellular stress).
- Direct binding of Mre11 to mtDNA was confirmed.
- Mre11 localized to mitochondria in mouse kidney cells, particularly in proximal tubule and thick ascending limb.
- Mre11 shifted from the nucleus to the cytoplasm during kidney cell differentiation.
Conclusions:
- Mre11 is present in mitochondria and binds to mtDNA.
- Mitochondrial Mre11 levels are modulated by cellular stress and differentiation.
- Mre11 likely plays a role in maintaining mitochondrial genome integrity, in addition to its nuclear functions.
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