This chapter covers genetic and biochemical aspects of mitochondrial bioenergetics dysfunction in neurological disorders associated with complex I defects. Complex I formation and functionality in mammalian cells depends on: coordinated expression of nuclear and mitochondrial genes, posttranslational subunit modifications, mitochondrial import/maturation of nuclear encoded subunits, subunits interaction and stepwise assembly, proteolytic processing. Examples of complex I dysfunction are herein presented: homozygous mutations in the nuclear NDUFS1 and NDUFS4 genes for structural components of complex I; an autosomic recessive form of encephalopathy associated with enhanced proteolytic degradation of complex I; familial cases of Parkinson a...
Mitochondrial diseases due to a reduced capacity for oxidative phosphorylation were first identified...
Complex I deficiency is the most frequently encountered single mitochondrial single enzyme deficienc...
Complex I deficiency is the most frequent cause of oxidative phosphorylation disorders. The disease ...
This paper covers genetic and biochemical aspects of mitochondrial bioenergetics dysfunction in here...
<p>The common cause of mitochondrial diseases is hereditary defects in mitochondrial respiratory cha...
AbstractIsolated complex I deficiency is the most common cause of respiratory chain dysfunction. Def...
AbstractComplex I deficiency, either specific or associated with other respiratory chain defects, ha...
Abstract The mitochondrial oxidative phosphorylation system is composed of five multisubunit enzyme ...
AbstractMutations of mitochondrial DNA (mtDNA) are associated with a wide spectrum of disorders enco...
A summary is presented of the cellular function and topology of the protein products of genes whose ...
AbstractThis paper covers genetic and biochemical aspects of mitochondrial bioenergetics dysfunction...
A study is presented on the expression and activity of complex I, as well as of other complexes of t...
Mitochondrial diseases involve the respiratory chain, which is under the dual control of nuclear and...
Mitochondrial complex I is the largest multi-protein enzyme complex of the oxidative phosphorylation...
Contains fulltext : 79619.pdf (publisher's version ) (Closed access)Mitochondria a...
Mitochondrial diseases due to a reduced capacity for oxidative phosphorylation were first identified...
Complex I deficiency is the most frequently encountered single mitochondrial single enzyme deficienc...
Complex I deficiency is the most frequent cause of oxidative phosphorylation disorders. The disease ...
This paper covers genetic and biochemical aspects of mitochondrial bioenergetics dysfunction in here...
<p>The common cause of mitochondrial diseases is hereditary defects in mitochondrial respiratory cha...
AbstractIsolated complex I deficiency is the most common cause of respiratory chain dysfunction. Def...
AbstractComplex I deficiency, either specific or associated with other respiratory chain defects, ha...
Abstract The mitochondrial oxidative phosphorylation system is composed of five multisubunit enzyme ...
AbstractMutations of mitochondrial DNA (mtDNA) are associated with a wide spectrum of disorders enco...
A summary is presented of the cellular function and topology of the protein products of genes whose ...
AbstractThis paper covers genetic and biochemical aspects of mitochondrial bioenergetics dysfunction...
A study is presented on the expression and activity of complex I, as well as of other complexes of t...
Mitochondrial diseases involve the respiratory chain, which is under the dual control of nuclear and...
Mitochondrial complex I is the largest multi-protein enzyme complex of the oxidative phosphorylation...
Contains fulltext : 79619.pdf (publisher's version ) (Closed access)Mitochondria a...
Mitochondrial diseases due to a reduced capacity for oxidative phosphorylation were first identified...
Complex I deficiency is the most frequently encountered single mitochondrial single enzyme deficienc...
Complex I deficiency is the most frequent cause of oxidative phosphorylation disorders. The disease ...