Literature DB >> 23835535

The clinical maze of mitochondrial neurology.

Salvatore DiMauro1, Eric A Schon, Valerio Carelli, Michio Hirano.   

Abstract

Mitochondrial diseases involve the respiratory chain, which is under the dual control of nuclear and mitochondrial DNA (mtDNA). The complexity of mitochondrial genetics provides one explanation for the clinical heterogeneity of mitochondrial diseases, but our understanding of disease pathogenesis remains limited. Classification of Mendelian mitochondrial encephalomyopathies has been laborious, but whole-exome sequencing studies have revealed unexpected molecular aetiologies for both typical and atypical mitochondrial disease phenotypes. Mendelian mitochondrial defects can affect five components of mitochondrial biology: subunits of respiratory chain complexes (direct hits); mitochondrial assembly proteins; mtDNA translation; phospholipid composition of the inner mitochondrial membrane; or mitochondrial dynamics. A sixth category-defects of mtDNA maintenance-combines features of Mendelian and mitochondrial genetics. Genetic defects in mitochondrial dynamics are especially important in neurology as they cause optic atrophy, hereditary spastic paraplegia, and Charcot-Marie-Tooth disease. Therapy is inadequate and mostly palliative, but promising new avenues are being identified. Here, we review current knowledge on the genetics and pathogenesis of the six categories of mitochondrial disorders outlined above, focusing on their salient clinical manifestations and highlighting novel clinical entities. An outline of diagnostic clues for the various forms of mitochondrial disease, as well as potential therapeutic strategies, is also discussed.

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Year:  2013        PMID: 23835535      PMCID: PMC3959773          DOI: 10.1038/nrneurol.2013.126

Source DB:  PubMed          Journal:  Nat Rev Neurol        ISSN: 1759-4758            Impact factor:   42.937


  152 in total

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Review 2.  CoQ(10) deficiencies and MNGIE: two treatable mitochondrial disorders.

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Review 3.  Mitochondrial dynamics: general concepts and clinical implications.

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  116 in total

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Review 4.  Reconsidering the Role of Mitochondria in Aging.

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5.  Glucocorticoids for mitochondrial disorders.

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Journal:  Singapore Med J       Date:  2015-02       Impact factor: 1.858

Review 6.  Maternally inherited mitochondrial respiratory disorders: from pathogenetic principles to therapeutic implications.

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7.  FOXRED1 silencing in mice: a possible animal model for Leigh syndrome.

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Journal:  Metab Brain Dis       Date:  2018-11-03       Impact factor: 3.584

8.  Recurrent kidney stones in a family with a mitochondrial disorder due to the m.3243A>G mutation.

Authors:  M Bargagli; G Primiano; A Primiano; J Gervasoni; A Naticchia; S Servidei; G Gambaro; P M Ferraro
Journal:  Urolithiasis       Date:  2018-11-07       Impact factor: 3.436

Review 9.  Nutritional interventions in primary mitochondrial disorders: Developing an evidence base.

Authors:  Kathryn M Camp; Danuta Krotoski; Melissa A Parisi; Katrina A Gwinn; Bruce H Cohen; Christine S Cox; Gregory M Enns; Marni J Falk; Amy C Goldstein; Rashmi Gopal-Srivastava; Gráinne S Gorman; Stephen P Hersh; Michio Hirano; Freddie Ann Hoffman; Amel Karaa; Erin L MacLeod; Robert McFarland; Charles Mohan; Andrew E Mulberg; Joanne C Odenkirchen; Sumit Parikh; Patricia J Rutherford; Shawne K Suggs-Anderson; W H Wilson Tang; Jerry Vockley; Lynne A Wolfe; Steven Yannicelli; Philip E Yeske; Paul M Coates
Journal:  Mol Genet Metab       Date:  2016-09-20       Impact factor: 4.797

10.  Mitochondrial Respiratory Disorders: A Perspective on their Metabolite Biomarkers and Implications for Clinical Diagnosis and Therapeutic Intervention.

Authors:  Martine Uittenbogaard; Anne Chiaramello
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