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1. Cellular allostatic load is linked to increased energy expenditure and accelerated biological aging.

2. OxPhos defects cause hypermetabolism and reduce lifespan in cells and in patients with mitochondrial diseases

3. A multi-omics longitudinal aging dataset in primary human fibroblasts with mitochondrial perturbations.

4. De novo variants in SP9 cause a novel form of interneuronopathy characterized by intellectual disability, autism spectrum disorder, and epilepsy with variable expressivity

6. TEFM variants impair mitochondrial transcription causing childhood-onset neurological disease

7. Clinical, neuroradiological, and molecular characterization of mitochondrial threonyl-tRNA-synthetase (TARS2)-related disorder

8. Diagnosis of tuberous sclerosis in the prenatal period: a retrospective study of 240 cases and review of the literature

9. Deoxyguanosine kinase deficiency: natural history and liver transplant outcome

10. Cardiac Outcomes in Adults With Mitochondrial Diseases

11. Improved detection of mitochondrial DNA instability in mitochondrial genome maintenance disorders

12. Ketogenic diet enhances the anti-cancer effects of PD-L1 blockade in renal cell carcinoma.

15. High throughput gene complementation screening permits identification of a mammalian mitochondrial protein synthesis (ρ−) mutant

16. Mitochondrial DNA Haplogroups and Variants Predispose to Chagas Disease Cardiomyopathy

22. Mutations of human NARS2, encoding the mitochondrial asparaginyl-tRNA synthetase, cause nonsyndromic deafness and Leigh syndrome.

23. Warburg-like effect is a hallmark of complex I assembly defects

25. Genetic landscape of congenital insensitivity to pain and hereditary sensory and autonomic neuropathies

26. Cellular allostatic load is linked to increased energy expenditure and accelerated biological aging

27. Infantile‐onset parkinsonism, dyskinesia, and developmental delay: do not forget polyglutamine defects!

29. List of Contributors

33. APOGEE 2: multi-layer machine-learning model for the interpretable prediction of mitochondrial missense variants

34. Figure S2 from Lactic Acidosis Together with GM-CSF and M-CSF Induces Human Macrophages toward an Inflammatory Protumor Phenotype

35. Table S1 from Lactic Acidosis Together with GM-CSF and M-CSF Induces Human Macrophages toward an Inflammatory Protumor Phenotype

36. Data from Lactic Acidosis Together with GM-CSF and M-CSF Induces Human Macrophages toward an Inflammatory Protumor Phenotype

37. List of Contributors

39. First characterization of LHON pedigrees in North Africa

42. AMPA receptor GluA2 subunit defects are a cause of neurodevelopmental disorders

44. MELAS syndrome causes glutamate and tricarboxylic acid cycle dysfunctions alleviated by ketone body treatment

45. Next-generation sequencing of Tunisian Leigh syndrome patients reveals novel variations: impact for diagnosis and treatment

46. Expanding the phenotype ofDNAJC30 ‐associated Leigh syndrome

47. Long-Term Persistence of Mitochondrial DNA Instability in HIV-Exposed Uninfected Children during and after Exposure to Antiretroviral Drugs and HIV

48. Glutamate-Induced Deregulation of Krebs Cycle in Mitochondrial Encephalopathy Lactic Acidosis Syndrome Stroke-Like Episodes (MELAS) Syndrome Is Alleviated by Ketone Body Exposure

49. A homozygous splice variant in ATP5PO, disrupts mitochondrial complex V function and causes Leigh syndrome in two unrelated families

50. Next-Generation Sequencing Identifies Novel PMPCA Variants in Patients with Late-Onset Dominant Optic Atrophy

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