Pathological variants of human mitochondrial DNA (mtDNA) typically co-exist with wild-type molecules, but the factors driving the selection of each are not understood. Because mitochondrial fitness does not favour the propagation of functional mtDNAs in disease states, we sought to create conditions where it would be advantageous. Glucose and glutamine consumption are increased in mtDNA dysfunction, and so we targeted the use of both in cells carrying the pathogenic m.3243A>G variant with 2-Deoxy-D-glucose (2DG), or the related 5-thioglucose. Here, we show that both compounds selected wild-type over mutant mtDNA, restoring mtDNA expression and respiration. Mechanistically, 2DG selectively inhibits the replication of mutant mtDNA; and glutam...
Mitochondrial DNA (mtDNA) is crucial for proper mitochondrial function in part because it encodes fo...
Metabolism and DNA replication are the two most fundamental biological functions in life. The catabo...
Using newly developed single cell A3243G mutation load assays a novel mechanism of mtDNA segregation...
Pathological variants of human mitochondrial DNA (mtDNA) typically co-exist with wild-type molecules...
Using molecular, biochemical, and untargeted stable isotope tracing approaches, we identify a previo...
<p>Pathological mutations in the mitochondrial DNA (mtDNA) produce a diverse range of tissue-specifi...
The peculiar biology of mitochondrial DNA (mtDNA) potentially has detrimental consequences for organ...
Pathological mutations in the mitochondrial DNA (mtDNA) produce a diverse range of tissue-specific d...
Damage to the mitochondrial genome (mtDNA) can lead to diseases for which there are no clearly effec...
<div><p>Damage to the mitochondrial genome (mtDNA) can lead to diseases for which there are no clear...
The mitochondrial genome is a significant target of exogenous and endogenous genotoxic agents; howev...
The permanent transfer of specific mtDNA sequences into mammalian cells could generate improved mode...
Mitochondria have been increasingly recognized as a central regulatory nexus for multiple metabolic ...
Mitochondrial dysfunction is involved in a wide array of devastating diseases, but the heterogeneity...
Mitochondria are critical for the energetic demands of virtually every cellular process within nucle...
Mitochondrial DNA (mtDNA) is crucial for proper mitochondrial function in part because it encodes fo...
Metabolism and DNA replication are the two most fundamental biological functions in life. The catabo...
Using newly developed single cell A3243G mutation load assays a novel mechanism of mtDNA segregation...
Pathological variants of human mitochondrial DNA (mtDNA) typically co-exist with wild-type molecules...
Using molecular, biochemical, and untargeted stable isotope tracing approaches, we identify a previo...
<p>Pathological mutations in the mitochondrial DNA (mtDNA) produce a diverse range of tissue-specifi...
The peculiar biology of mitochondrial DNA (mtDNA) potentially has detrimental consequences for organ...
Pathological mutations in the mitochondrial DNA (mtDNA) produce a diverse range of tissue-specific d...
Damage to the mitochondrial genome (mtDNA) can lead to diseases for which there are no clearly effec...
<div><p>Damage to the mitochondrial genome (mtDNA) can lead to diseases for which there are no clear...
The mitochondrial genome is a significant target of exogenous and endogenous genotoxic agents; howev...
The permanent transfer of specific mtDNA sequences into mammalian cells could generate improved mode...
Mitochondria have been increasingly recognized as a central regulatory nexus for multiple metabolic ...
Mitochondrial dysfunction is involved in a wide array of devastating diseases, but the heterogeneity...
Mitochondria are critical for the energetic demands of virtually every cellular process within nucle...
Mitochondrial DNA (mtDNA) is crucial for proper mitochondrial function in part because it encodes fo...
Metabolism and DNA replication are the two most fundamental biological functions in life. The catabo...
Using newly developed single cell A3243G mutation load assays a novel mechanism of mtDNA segregation...