Abstract

Mitochondrial inner membrane protein MPV17 is a protein of unknown function that is associated with mitochondrial DNA (mtDNA)-depletion syndrome (MDS). MPV17 loss-of-function has been reported to result in tissue-specific nucleotide pool imbalances, which can occur in states of perturbed folate-mediated one-carbon metabolism (FOCM), but MPV17 has not been directly linked to FOCM. FOCM is a metabolic network that provides one-carbon units for the de novo synthesis of purine and thymidylate nucleotides (e.g. dTMP) for both nuclear DNA (nuDNA) and mtDNA replication. In this study, we investigated the impact of reduced MPV17 expression on markers of impaired FOCM in HeLa cells. Depressed MPV17 expression reduced mitochondrial folate levels by 43% and increased uracil levels, a marker of impaired dTMP synthesis, in mtDNA by 3-fold. The capacity of mitochondrial de novo and salvage pathway dTMP biosynthesis was unchanged by the reduced MPV17 expression, but the elevated levels of uracil in mtDNA suggested that other sources of mitochondrial dTMP are compromised in MPV17-deficient cells. These results indicate that MPV17 provides a third dTMP source, potentially by serving as a transporter that transfers dTMP from the cytosol to mitochondria to sustain mtDNA synthesis. We propose that MPV17 loss-of-function and related hepatocerebral MDS are linked to impaired FOCM in mitochondria by providing insufficient access to cytosolic dTMP pools and by severely reducing mitochondrial folate pools.

Highlights

  • Mitochondrial inner membrane protein MPV17 is a protein of unknown function that is associated with mitochondrial DNA-depletion syndrome (MDS)

  • MPV17 loss-of-function has been reported to result in tissue-specific nucleotide pool imbalances, which can occur in states of perturbed folate-mediated one-carbon metabolism (FOCM), but MPV17 has not been directly linked to FOCM

  • The interaction between MPV17 and FOCM was investigated to provide insight into the role of MPV17 in mitochondrial nucleotide synthesis and mitochondrial DNA (mtDNA) depletion. These studies demonstrate that MPV17 function is critical to maintain mitochondrial folate levels and prevent uracil accumulation in mtDNA, providing new insights into the role of MPV17 in MDS

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Summary

ARTICLE cro

The mitochondrial inner membrane protein MPV17 prevents uracil accumulation in mitochondrial DNA. The capacity of mitochondrial de novo and salvage pathway dTMP biosynthesis was unchanged by the reduced MPV17 expression, but the elevated levels of uracil in mtDNA suggested that other sources of mitochondrial dTMP are compromised in MPV17-deficient cells These results indicate that MPV17 provides a third dTMP source, potentially by serving as a transporter that transfers dTMP from the cytosol to mitochondria to sustain mtDNA synthesis. Nuclear dTMP biosynthesis via FOCM requires isoforms of each of the mitochondrial dTMP synthesis enzymes (SHMT1/SHMT2␣, TYMS, and DHFR) These enzymes are SUMOylated and translocated from the cytosol to the nucleus during S phase, where they form a multienzyme complex for nuclear dTMP synthesis at sites of nuclear DNA (nuDNA) replication and repair (14 –16). The effect of MPV17 expression on markers of impaired FOCM, including nucleotide synthesis and uracil misincorporation, was investigated

Results
Discussion
Folates in whole cellNS
Uracil levels in mtDNA from HeLa cells
Uracil in mtDNA from folatedepleted HeLa cells
Stable cell lines
Culture conditions
Mitochondrial extraction
Formate suppression assay
Western blotting analyses and densitometry
Microbiological Lactobacillus casei assay
Folate accumulation
Folate uptake
Mitochondrial content and mass
Isolation of nucleotides in mtDNA
Uracil content in DNA

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