Mitochondrial fatty acid synthesis (FASII) and iron sulfur cluster (FeS) biogenesis are both vital biosynthetic processes within mitochondria. In this study, we demonstrate that the mitochondrial acyl carrier protein (ACP), which has a well-known role in FASII, plays an unexpected and evolutionarily conserved role in FeS biogenesis. ACP is a stable and essential subunit of the eukaryotic FeS biogenesis complex. In the absence of ACP, the complex is destabilized resulting in a profound depletion of FeS throughout the cell. This role of ACP depends upon its covalently bound 4’-phosphopantetheine (4-PP)-conjugated acyl chain to support maximal cysteine desulfurase activity. Thus, it is likely that ACP is not simply an obligate subunit but also...
Acyl carrier protein (ACP) transports the growing fatty acid chain between enzymatic domains of fatt...
Iron-sulfur clusters are essential cofactors in many biochemical processes. ISD11, one of the subuni...
The chemical and electronic variability of Fe-S clusters are surely key factors for why these cofact...
Cells must decide when to expand mitochondrial capacity to accommodate increased energy demands. Rut...
Most eukaryotic cells retain a mitochondrial fatty acid synthesis (FASII) pathway whose acyl carrier...
Most eukaryotic cells retain a mitochondrial fatty acid synthesis (FASII) pathway whose acyl carrier...
The mitochondrial acyl carrier protein (human ACPM, yeast Acp1) is an essential mitochondrial protei...
In eukaryotes, sulfur is mobilized for incorporation into multiple biosynthetic pathways by a cystei...
Iron–sulfur clusters are essential cofactors in many biochemical processes. ISD11, one of the subuni...
AbstractGenes that encode mitochondrial homologues to the bacterial enzymes of fatty acid synthesis ...
AbstractPlant and fungal mitochondria contain type II fatty acid synthesis systems closely related t...
AbstractIron–sulfur (Fe/S) clusters are important cofactors of numerous proteins involved in electro...
A genome-wide screen for Saccharomyces cerevisiae iron-sulfur (Fe/S) cluster assembly mutants identi...
Iron–sulfur clusters (Fe–S or ISC) are essential cofactors that function in a wide range of biologic...
AbstractRecent studies have revealed that mitochondria are able to synthesize fatty acids in a malon...
Acyl carrier protein (ACP) transports the growing fatty acid chain between enzymatic domains of fatt...
Iron-sulfur clusters are essential cofactors in many biochemical processes. ISD11, one of the subuni...
The chemical and electronic variability of Fe-S clusters are surely key factors for why these cofact...
Cells must decide when to expand mitochondrial capacity to accommodate increased energy demands. Rut...
Most eukaryotic cells retain a mitochondrial fatty acid synthesis (FASII) pathway whose acyl carrier...
Most eukaryotic cells retain a mitochondrial fatty acid synthesis (FASII) pathway whose acyl carrier...
The mitochondrial acyl carrier protein (human ACPM, yeast Acp1) is an essential mitochondrial protei...
In eukaryotes, sulfur is mobilized for incorporation into multiple biosynthetic pathways by a cystei...
Iron–sulfur clusters are essential cofactors in many biochemical processes. ISD11, one of the subuni...
AbstractGenes that encode mitochondrial homologues to the bacterial enzymes of fatty acid synthesis ...
AbstractPlant and fungal mitochondria contain type II fatty acid synthesis systems closely related t...
AbstractIron–sulfur (Fe/S) clusters are important cofactors of numerous proteins involved in electro...
A genome-wide screen for Saccharomyces cerevisiae iron-sulfur (Fe/S) cluster assembly mutants identi...
Iron–sulfur clusters (Fe–S or ISC) are essential cofactors that function in a wide range of biologic...
AbstractRecent studies have revealed that mitochondria are able to synthesize fatty acids in a malon...
Acyl carrier protein (ACP) transports the growing fatty acid chain between enzymatic domains of fatt...
Iron-sulfur clusters are essential cofactors in many biochemical processes. ISD11, one of the subuni...
The chemical and electronic variability of Fe-S clusters are surely key factors for why these cofact...