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Home › Dataset Library › OXPHOS complex I deficiency leads to transcriptional changes of the Nrf2-Keap1 pathway and selenoproteins.

Dataset: OXPHOS complex I deficiency leads to transcriptional changes of the Nrf2-Keap1 pathway and selenoproteins.

Defective complex I (CI) is the most common type of oxidative phosphorylation (OXPHOS) disease in patients, with an incidence of 1 in...

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Defective complex I (CI) is the most common type of oxidative phosphorylation (OXPHOS) disease in patients, with an incidence of 1 in 5,000 live births. Complex I deficiency can present in infancy or early adulthood and shows a wide variety of clinical manifestations, including Leigh syndrome, (cardio)myopathy, hypotonia, stroke, ataxia and lactic acidosis. A number of critical processes and factors, like superoxide production, calcium homeostasis, mitochondrial membrane potential and mitochondrial morphology, are known to be involved in clinical CI deficiency, but not all factors are yet known and a complete picture is lacking. Therefore, whole genome gene expression profiling was performed in fibroblasts of CI deficient patients and controls, comparing glycolytic and oxidative conditions. Linear regression and pathway analysis identified a number of key adaptive processes. Fibroblasts were derived from skin biopsies of five patients homozygous or compound heterozygous for nuclear complex I mutations and five controls. The groups were matched for age and sex.

Species:
human

Samples:
20

Source:
E-GEOD-27041

Updated:
Dec.12, 2014

Registered:
Sep.15, 2014


Factors: (via ArrayExpress)
Sample CULTURE CONDITION GENDER AGE DISEASE STATE
GSM666024 galactose male 1 year 6 months control
GSM666025 glucose male 1 year 6 months control
GSM666026 galactose female 1 year 11 months control
GSM666027 glucose female 1 year 11 months control
GSM666028 galactose male 6 months control
GSM666029 glucose male 6 months control
GSM666030 galactose male 3 years 3 months control
GSM66603 glucose male 3 years 3 months control
GSM666032 galactose male 1 year 7 months control
GSM666033 glucose male 1 year 7 months control
GSM666034 galactose male 3 years defective complex I
GSM666035 glucose male 3 years defective complex I
GSM666036 galactose male <1 month defective complex I
GSM666037 glucose male <1 month defective complex I
GSM666038 galactose male <7 months defective complex I
GSM666039 glucose male <7 months defective complex I
GSM666040 galactose male 1 year defective complex I
GSM66604 glucose male 1 year defective complex I
GSM666042 galactose female 7 months defective complex I
GSM666043 glucose female 7 months defective complex I

Tags

  • disease
  • genome
  • lactic acidosis
  • leigh syndrome
  • membrane
  • myopathy
  • skin
  • stroke
  • syndrome

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