Pleiotropic molecular defects in energy-transducing complexes in mitochondrial encephalomyopathy (MELAS)

https://doi.org/10.1016/0022-510X(89)90132-9Get rights and content

Abstract

The extent of molecular defects in the mitochondrial energy-transducing system was examined in autopsied tissues of a 14-year-old male with mitochondrial myopathy, encephalopathy, lactic acidosis, and stroke-like episodes (MELAS) in order to elucidate the underlying molecular and genetic abnormalities. The patient also had other multi-organic disorders: hypertrophic cardiomyopathy, nephrotic syndrome, and pseudohypoparathyroidism. Enzymic activities of complex I and IV were severely decreased, and those of complex III and V were mildly decreased in the mitochondria isolated from various tissues, but the severity of the deficiencies varied from tissue to tissue. In contrast, complex II and citrate synthase activities were normal or were decreased to a lesser extent than the enzymic activities of other complexes in all the tissues examined. These results suggest that the energy-transducing complexes, namely complexes I, III, IV, and V, that contain mitochondrially synthesized subunits, were selectively affected. Immunoblot analysis demonstrated that the decreased enzymic activities were based on decreased contents of subunits in these complexes. The multi-organic manifestation of the disorder may result from wide and uneven distribution of abnormal mitochondria that have pleiotropic molecular defects in the energy-transducing complexes among the organs of the patient.

References (42)

  • T. Ozawa et al.

    Mateŕnal inheritance of deleted DNA in a family with mitochondrial myopathy

    Biochem. Biophys. Res. Commun.

    (1988)
  • A.H.V. Schapira et al.

    Molecular basis of mitochondrial myopathies: polypeptide analysis in complex I deficiency

    Lancet

    (1988)
  • Y. Shimomura et al.

    Isolation and reconstitution of the iron-sulfur protein in ubiquinol-cytochrome c oxidoreductase complex

    J. Biol. Chem.

    (1984)
  • P.A. Srere

    Citrate synthase

    Methods Enzymol.

    (1969)
  • M. Tanaka et al.

    Deficiency of subunits in heart mitochondrial NADH-ubiquinone oxidoreductase of a patient with mitochondrial encephalomyopathy

    Biochem. Biophys. Res. Common.

    (1986)
  • S. Anderson et al.

    Sequence and organisation of the human mitochondrial genome

    Nature

    (1981)
  • J.E. Arrand

    Preparation of nucleic acid probes

  • N. Bresolin et al.

    Fatal infantile cytochrome c oxidase deficiency: decrease of immunologically detectable enzyme in muscle

    Neurology

    (1985)
  • E. Carafoli

    Intracellular calcium homeostasis

    Annu. Rev. Biochem.

    (1987)
  • A. Chomyn et al.

    URF6, last unidentified reading frame of human mtDNA, codes for an NADH dehydrogenase subunit

    Science

    (1986)
  • S. DiMauro et al.

    Mitochondrial myopathies

    Ann. Neurol.

    (1985)
  • Cited by (0)

    View full text