Severe X-Linked Mitochondrial Encephalomyopathy Associated with a Mutation in Apoptosis-Inducing Factor

التفاصيل البيبلوغرافية
العنوان: Severe X-Linked Mitochondrial Encephalomyopathy Associated with a Mutation in Apoptosis-Inducing Factor
المؤلفون: Marina Mora, Graziella Uziel, Irina F. Sevrioukova, Orsetta Zuffardi, Federica Invernizzi, Pio D'Adamo, Daniele Ghezzi, Francesca Novara, Massimo Zeviani, Costanza Lamperti
المساهمون: D., Ghezzi, I., Sevrioukova, F., Invernizzi, C., Lamperti, M., Mora, D'Adamo, ADAMO PIO, F., Novara, O., Zuffardi, G., Uziel, M., Zeviani
المصدر: The American Journal of Human Genetics. (4):639-649
بيانات النشر: The American Society of Human Genetics. Published by Elsevier Inc.
مصطلحات موضوعية: Mitochondrial encephalomyopathy, Male, DNA Primer, Riboflavin, Respiratory chain, Poly (ADP-Ribose) Polymerase-1, Apoptosis, Gene, drug effect [Skeletal], Apoptosis Inducing Factor, Apoptosis Inducing Factor: genetics, Apoptosis Inducing Factor: metabolism, Caspase 3, Caspase 3: metabolism, Computer Simulation, DNA, DNA Primers, DNA Primers: chemistry, Dietary Supplements, Electron Transport, Electron Transport: physiology, Female, Fibroblasts, Fibroblasts: cytology, Fibroblasts: drug effects, Fibroblasts: metabolism, Flavin-Adenine Dinucleotide, Flavin-Adenine Dinucleotide: metabolism, Genes, Humans, In Situ Nick-End Labeling, Infant, Magnetic Resonance Imaging, Mitochondrial, Mitochondrial Encephalomyopathies, Mitochondrial Encephalomyopathies: genetics, Mitochondrial Encephalomyopathies: metabolism, Mitochondrial Encephalomyopathies: pathology, Mitochondrial: genetics, Mitochondrial: metabolism, Monozygotic, Muscle, Mutation, Mutation: genetics, Nervous System Diseases, Nervous System Diseases: drug therapy, Nervous System Diseases: etiology, Newborn, Pedigree, Poly(ADP-ribose) Polymerases, Poly(ADP-ribose) Polymerases: metabolism, Protein Conformation, Riboflavin: administration \& dosage, Skeletal, Skeletal: cytology, Skeletal: drug effects, Skeletal: metabolism, Staurosporine, Staurosporine: pharmacology, Twins, X-Linked, Genes, X-Linked, Genetics(clinical), genetic [Mitochondrial], Poly(ADP-ribose) Polymerase, metabolism [Poly(ADP-ribose) Polymerases], chemistry [DNA Primers], Apoptosis-inducing factor, pathology [Mitochondrial Encephalomyopathies], metabolism [Fibroblasts], Human, DNA, Mitochondrial, genetic [Mutation], Genetics, metabolism [Caspase 3], Dietary Supplement, metabolism [Mitochondrial], Apoptosi, medicine.disease, metabolism [Skeletal], Monozygotic twin, drug effect [Fibroblasts], Mitochondrion, Mitochondrial Encephalomyopathie, Mitochondrial myopathy, cytology [Fibroblasts], Nervous System Disease, Genetics (clinical), cytology [Skeletal], metabolism [Mitochondrial Encephalomyopathies], physiology [Electron Transport], Biochemistry, metabolism [Flavin-Adenine Dinucleotide], Fibroblast, genetic [Mitochondrial Encephalomyopathies], AIFM1, Infant, Newborn, Muscle, Skeletal, Twins, Monozygotic, Biology, genetic [Apoptosis Inducing Factor], etiology [Nervous System Diseases], Severe X-linked mitochondrial encephalomyopathy, Report, pharmacology [Staurosporine], medicine, Twin, Molecular biology, metabolism [Apoptosis Inducing Factor], drug therapy [Nervous System Diseases], administration \& dosage [Riboflavin]
الوصف: We investigated two male infant patients who were given a diagnosis of progressive mitochondrial encephalomyopathy on the basis of clinical, biochemical, and morphological features. These patients were born from monozygotic twin sisters and unrelated fathers, suggesting an X-linked trait. Fibroblasts from both showed reduction of respiratory chain (RC) cIII and cIV, but not of cI activities. We found a disease-segregating mutation in the X-linked AIFM1 gene, encoding the Apoptosis-Inducing Factor (AIF) mitochondrion-associated 1 precursor that deletes arginine 201 (R201 del). Under normal conditions, mature AIF is a FAD-dependent NADH oxidase of unknown function and is targeted to the mitochondrial intermembrane space (this form is called AIF(mit)). Upon apoptogenic stimuli, a soluble form (AIF(sol)) is released by proteolytic cleavage and migrates to the nucleus, where it induces "parthanatos," i.e., caspase-independent fragmentation of chromosomal DNA. In vitro, the AIF(R201 del) mutation decreases stability of both AIF(mit) and AIF(sol) and increases the AIF(sol) DNA binding affinity, a prerequisite for nuclear apoptosis. In AIF(R201 del) fibroblasts, staurosporine-induced parthanatos was markedly increased, whereas re-expression of AIF(wt) induced recovery of RC activities. Numerous TUNEL-positive, caspase 3-negative nuclei were visualized in patient \#1's muscle, again indicating markedly increased parthanatos in the AIF(R201 del) critical tissues. We conclude that AIF(R201 del) is an unstable mutant variant associated with increased parthanatos-linked cell death. Our data suggest a role for AIF in RC integrity and mtDNA maintenance, at least in some tissues. Interestingly, riboflavin supplementation was associated with prolonged improvement of patient \#1's neurological conditions, as well as correction of RC defects in mutant fibroblasts, suggesting that stabilization of the FAD binding in AIF(mit) is beneficial.
وصف الملف: STAMPA
اللغة: English
تدمد: 0002-9297
DOI: 10.1016/j.ajhg.2010.03.002
الوصول الحر: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::64ac9f47428b5dc54035e607c3897c64Test
حقوق: OPEN
رقم الانضمام: edsair.doi.dedup.....64ac9f47428b5dc54035e607c3897c64
قاعدة البيانات: OpenAIRE
الوصف
تدمد:00029297
DOI:10.1016/j.ajhg.2010.03.002