In the course of evolution, mitochondria lost their independence, and mitochondrial DNA (mtDNA) became the 'slave' of nuclear DNA, depending on numerous nucleus-encoded factors for its integrity, replication and expression. Mutations in any of these factors may alter the cross-talk between the two genomes and cause Mendelian disorders characterized by qualitative (multiple deletions) or quantitative (depletion) alterations of mtDNA, or by defective translation of mtDNA-encoded respiratory chain components. © 2009 Blackwell Publishing Ltd
Mitochondrial diseases involve the respiratory chain, which is under the dual control of nuclear and...
Our understanding of the molecular basis of mitochondrial disorders has come primarily from the disc...
AbstractAfter reviewing the history of mitochondrial diseases, I follow a genetic classification to ...
In the course of evolution, mitochondria lost their independence, and mtDNA became "slave" of nDNA, ...
More than one billion years ago, mitochondria were free-living prokaryotic organisms with their own ...
Neuromuscular disorders due to abnormalities of mitochondrial energy supply have become an important...
In addition to sporadic or maternally-inherited mutations of the mitochondrial genome, abnormalities...
BACKGROUND: Mitochondrial myopathies are regulated by two genomes: the nuclear DNA, and the mitochon...
A large group of mitochondrial disorders, ranging from early-onset pediatric encephalopathic syndrom...
AbstractBy convention, the term “mitochondrial diseases” refers to disorders of the mitochondrial re...
The molecular mechanisms by which the nuclear genome regulates the biosynthesis of mitochondrial DNA...
The rapidly expanding list of human diseases due to lesions of mitochondrial DNA includes myopathies...
Mitochondrial disorders are caused by deficient respiratory chain function, resulting in a complex s...
The maintenance of mitochondrial DNA (mtDNA) is dependent on DNA polymerase gamma (poly). The cataly...
Mitochondria are organelles of eukaryotic cells that primarily provide energy metabolism, but also p...
Mitochondrial diseases involve the respiratory chain, which is under the dual control of nuclear and...
Our understanding of the molecular basis of mitochondrial disorders has come primarily from the disc...
AbstractAfter reviewing the history of mitochondrial diseases, I follow a genetic classification to ...
In the course of evolution, mitochondria lost their independence, and mtDNA became "slave" of nDNA, ...
More than one billion years ago, mitochondria were free-living prokaryotic organisms with their own ...
Neuromuscular disorders due to abnormalities of mitochondrial energy supply have become an important...
In addition to sporadic or maternally-inherited mutations of the mitochondrial genome, abnormalities...
BACKGROUND: Mitochondrial myopathies are regulated by two genomes: the nuclear DNA, and the mitochon...
A large group of mitochondrial disorders, ranging from early-onset pediatric encephalopathic syndrom...
AbstractBy convention, the term “mitochondrial diseases” refers to disorders of the mitochondrial re...
The molecular mechanisms by which the nuclear genome regulates the biosynthesis of mitochondrial DNA...
The rapidly expanding list of human diseases due to lesions of mitochondrial DNA includes myopathies...
Mitochondrial disorders are caused by deficient respiratory chain function, resulting in a complex s...
The maintenance of mitochondrial DNA (mtDNA) is dependent on DNA polymerase gamma (poly). The cataly...
Mitochondria are organelles of eukaryotic cells that primarily provide energy metabolism, but also p...
Mitochondrial diseases involve the respiratory chain, which is under the dual control of nuclear and...
Our understanding of the molecular basis of mitochondrial disorders has come primarily from the disc...
AbstractAfter reviewing the history of mitochondrial diseases, I follow a genetic classification to ...