Cardiolipin (CL) is a mitochondrial phospholipid essential for electron transport chain (ETC) integrity. CL-deficiency in humans is caused by mutations in the tafazzin (Taz) gene and results in a multisystem pediatric disorder, Barth syndrome (BTHS). It has been reported that tafazzin deficiency destabilizes mitochondrial respiratory chain complexes and affects supercomplex assembly. The aim of this study was to investigate the impact of Taz-knockdown on the mitochondrial proteomic landscape and metabolic processes, such as stability of respiratory chain supercomplexes and their interactions with fatty acid oxidation enzymes in cardiac muscle. Proteomic analysis demonstrated reduction of several polypeptides of the mitochondrial respiratory...
AbstractBarth syndrome (BTHS) patients carrying mutations in tafazzin (TAZ1), which is involved in t...
Barth syndrome (BTHS) is a cardiomyopathy caused by the loss of tafazzin, a mitochondrial acyltransf...
Energy-demanding organs like the heart are strongly dependent on oxidative phosphorylation in mitoch...
Barth syndrome (BTHS) is a rare X-linked disorder that is characterized by cardiac and skeletal myop...
AbstractCardiolipin is a mitochondrion-specific phospholipid that stabilizes the assembly of respira...
Cardiolipin is a mitochondrion-specific phospholipid that stabilizes the assembly of respiratory cha...
As the signature phospholipid of the mitochondrial membranes, cardiolipin (CL) plays an essential ro...
Cardiolipin is a mitochondrion-specific phospholipid that stabilizes the assembly of respiratory cha...
Barth syndrome is an X-linked genetic disorder caused by mutations in the tafazzin (taz) gene and ch...
Background: Cardiomyopathy is a major clinical feature in Barth syndrome (BTHS), an X-linked mitocho...
The phospholipid, cardiolipin, is essential for maintaining mitochondrial structure and optimal func...
Barth syndrome (BTHS) is a rare monogenic disease characterized by cardiomyopathy, skeletal myopathy...
Barth syndrome (BTHS) is a rare monogenic disease characterized by cardiomyopathy, skeletal myopathy...
Barth syndrome (BTHS) patients carrying mutations in tafazzin (TAZ1), which is involved in the final...
AbstractBarth syndrome (BTHS) patients carrying mutations in tafazzin (TAZ1), which is involved in t...
AbstractBarth syndrome (BTHS) patients carrying mutations in tafazzin (TAZ1), which is involved in t...
Barth syndrome (BTHS) is a cardiomyopathy caused by the loss of tafazzin, a mitochondrial acyltransf...
Energy-demanding organs like the heart are strongly dependent on oxidative phosphorylation in mitoch...
Barth syndrome (BTHS) is a rare X-linked disorder that is characterized by cardiac and skeletal myop...
AbstractCardiolipin is a mitochondrion-specific phospholipid that stabilizes the assembly of respira...
Cardiolipin is a mitochondrion-specific phospholipid that stabilizes the assembly of respiratory cha...
As the signature phospholipid of the mitochondrial membranes, cardiolipin (CL) plays an essential ro...
Cardiolipin is a mitochondrion-specific phospholipid that stabilizes the assembly of respiratory cha...
Barth syndrome is an X-linked genetic disorder caused by mutations in the tafazzin (taz) gene and ch...
Background: Cardiomyopathy is a major clinical feature in Barth syndrome (BTHS), an X-linked mitocho...
The phospholipid, cardiolipin, is essential for maintaining mitochondrial structure and optimal func...
Barth syndrome (BTHS) is a rare monogenic disease characterized by cardiomyopathy, skeletal myopathy...
Barth syndrome (BTHS) is a rare monogenic disease characterized by cardiomyopathy, skeletal myopathy...
Barth syndrome (BTHS) patients carrying mutations in tafazzin (TAZ1), which is involved in the final...
AbstractBarth syndrome (BTHS) patients carrying mutations in tafazzin (TAZ1), which is involved in t...
AbstractBarth syndrome (BTHS) patients carrying mutations in tafazzin (TAZ1), which is involved in t...
Barth syndrome (BTHS) is a cardiomyopathy caused by the loss of tafazzin, a mitochondrial acyltransf...
Energy-demanding organs like the heart are strongly dependent on oxidative phosphorylation in mitoch...