BACKGROUND: Defects of the mitochondrial respiratory chain complex II (succinate dehydrogenase (SDH) complex) are extremely rare. Of the four nuclear encoded proteins composing complex II, only mutations in the 70 kDa flavoprotein (SDHA) and the recently identified complex II assembly factor (SDHAF1) have been found to be causative for mitochondrial respiratory chain diseases. Mutations in the other three subunits (SDHB, SDHC, SDHD) and the second assembly factor (SDHAF2) have so far only been associated with hereditary paragangliomas and phaeochromocytomas. Recessive germline mutations in SDHB have recently been associated with complex II deficiency and leukodystrophy in one patient. METHODS AND RESULTS: We present the clinical and molecul...
Mitochondrial disease involving complex II is rare among respiratory chain deficiencies and its gene...
AbstractGenetically defined mitochondrial deficiencies that result in the loss of complex II functio...
BACKGROUND:Germline mutations of the SDHD, SDHB and SDHC genes, encoding three of the four subunits ...
BACKGROUND: Isolated complex II deficiency is a rare form of mitochondrial disease, accounting for ...
Isolated defects of the mitochondrial respiratory complex II (succinate dehydrogenase, SDH) are rare...
Isolated mitochondrial complex II deficiency is a rare cause of mitochondrial respiratory chain dise...
Succinate dehydrogenase (SDH) is a crucial metabolic enzyme complex that is involved in ATP producti...
Background Isolated complex II deficiency is a rare form of mitochondrial disease, accounting for ap...
Abstract Background Deficiency of complex II (succinate dehydrogenase, SDH) represents a rare cause ...
To investigate respiratory chain complex II deficiency resulted from mutation in succinate dehydroge...
AbstractThe succinate dehydrogenase consists of only four subunits, all nuclearly encoded, and is pa...
This is the final version. Available on open access from Springer nature via the DOI in this recordI...
International audienceMitochondrial succinate dehydrogenase (SDH) consists merely of four nuclearly ...
Defects in complex II of the mitochondrial respiratory chain are a rare cause of mitochondrial disor...
Defects in complex II of the mitochondrial respiratory chain are a rare cause of mitochondrial disor...
Mitochondrial disease involving complex II is rare among respiratory chain deficiencies and its gene...
AbstractGenetically defined mitochondrial deficiencies that result in the loss of complex II functio...
BACKGROUND:Germline mutations of the SDHD, SDHB and SDHC genes, encoding three of the four subunits ...
BACKGROUND: Isolated complex II deficiency is a rare form of mitochondrial disease, accounting for ...
Isolated defects of the mitochondrial respiratory complex II (succinate dehydrogenase, SDH) are rare...
Isolated mitochondrial complex II deficiency is a rare cause of mitochondrial respiratory chain dise...
Succinate dehydrogenase (SDH) is a crucial metabolic enzyme complex that is involved in ATP producti...
Background Isolated complex II deficiency is a rare form of mitochondrial disease, accounting for ap...
Abstract Background Deficiency of complex II (succinate dehydrogenase, SDH) represents a rare cause ...
To investigate respiratory chain complex II deficiency resulted from mutation in succinate dehydroge...
AbstractThe succinate dehydrogenase consists of only four subunits, all nuclearly encoded, and is pa...
This is the final version. Available on open access from Springer nature via the DOI in this recordI...
International audienceMitochondrial succinate dehydrogenase (SDH) consists merely of four nuclearly ...
Defects in complex II of the mitochondrial respiratory chain are a rare cause of mitochondrial disor...
Defects in complex II of the mitochondrial respiratory chain are a rare cause of mitochondrial disor...
Mitochondrial disease involving complex II is rare among respiratory chain deficiencies and its gene...
AbstractGenetically defined mitochondrial deficiencies that result in the loss of complex II functio...
BACKGROUND:Germline mutations of the SDHD, SDHB and SDHC genes, encoding three of the four subunits ...