Literature DB >> 17535832

Novel mutations of ND genes in complex I deficiency associated with mitochondrial encephalopathy.

Edoardo Malfatti1, Marianna Bugiani, Federica Invernizzi, Carolina Fischinger-Moura de Souza, Laura Farina, Franco Carrara, Eleonora Lamantea, Carlo Antozzi, Paolo Confalonieri, Maria Teresa Sanseverino, Roberto Giugliani, Graziella Uziel, Massimo Zeviani.   

Abstract

Isolated Complex I (CI) deficiency, the most frequent cause of mitochondrial disease, is a clinically and genetically heterogeneous condition. Complex I is a giant multiheteromeric enzyme composed of seven ND subunits encoded by mitochondrial DNA (mtDNA) genes, and at least 38 subunits encoded by nuclear genes. To establish the contribution to human mitochondrial encephalopathy of ND versus nuclear gene mutations, we have been undertaking a systematic analysis of CI genes in a cohort of 46 adult and paediatric patients with biochemically defined CI defect. Sequence analysis of the entire mtDNA let us identify six patients with mutations in ND genes. The clinical presentations varied, from infantile Leigh syndrome, to childhood MELAS, to adult-onset encephalopathic syndromes of variable severity. Three of the mutations were not previously reported (3481G > A, 14600G > A and 13063G > A, in ND1, ND6 and ND5 genes, respectively) and were further investigated in mutant transmitochondrial cybrids. Tight correlation between mutation load and decrease in CI activity was observed in each of the three mutant cybrid lines, supporting the pathogenic role of the novel mutations. Structural studies on mutant cybrids showed impaired assembly or reduced stability of the holoenzyme complex. In our experience ND gene mutations are relatively common in CI-defective mitochondrial encephalopathy of both children and adults.

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Year:  2007        PMID: 17535832     DOI: 10.1093/brain/awm114

Source DB:  PubMed          Journal:  Brain        ISSN: 0006-8950            Impact factor:   13.501


  41 in total

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Review 4.  Mitochondrial DNA heteroplasmy in disease and targeted nuclease-based therapeutic approaches.

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Review 5.  Maternally inherited mitochondrial respiratory disorders: from pathogenetic principles to therapeutic implications.

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6.  Novel mutation of ND4 gene identified by targeted next-generation sequencing in patient with Leigh syndrome.

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7.  Mitochondrial DNA variations in Madras motor neuron disease.

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8.  A mitochondrial bioenergetic etiology of disease.

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Review 9.  Mitochondrial DNA damage and reactive oxygen species in neurodegenerative disease.

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Review 10.  Long survival in patients with leigh syndrome and the m.10191T>C mutation in MT-ND3 : a case report and review of the literature.

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Journal:  J Child Neurol       Date:  2013-11-27       Impact factor: 1.987

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