AbstractWe have cloned cDNAs encoding the last iron-sulphur protein of complex I from Neurospora crassa. The cDNA sequence contains an open reading frame that codes for a precursor polypeptide of 226 amino acid residues with a molecular mass of 24 972 Da. Our results indicate that the mature protein belongs probably to the peripheral arm of complex I and is rather unstable when not assembled into the enzyme. The protein is highly homologous to the PSST subunit of bovine complex I, the most likely candidate to bind iron-sulphur cluster N-2. All the amino acid residues proposed to bind such a cluster are conserved in the fungal protein
Many essential cellular proteins use iron-sulfur (Fe-S) clusters as cofactors. These proteins often ...
AbstractIn order to identify the ligand residues of the [2Fe-2S] cluster of the 25 kDa (NQO2) subuni...
Iron-sulfur (Fe-S) clusters are cofactors essential for life. Though the proteins that function in t...
AbstractWe have isolated cDNA clones encoding an iron-sulfur polypeptide subunit of the mitochondria...
AbstractA polypeptide subunit of complex I from Neurospora crassa, homologous to bovine TYKY, was ex...
The genes encoding the 21 kDa protein and the 19.3 kDa, 21.3 kDa and 24 kDa iron-sulfur subunits of ...
AbstractProteins containing iron–sulfur (Fe–S) clusters arose early in evolution and are essential t...
AbstractIscA homologs are known to be involved in iron–sulfur cluster formation in various organisms...
The chemical and electronic variability of Fe-S clusters are surely key factors for why these cofact...
Iron-sulfur (Fe/S) clusters are inorganic cofactors of many proteins found in nearly all prokaryotic...
Iron-sulphur cluster biogenesis requires coordinated delivery of iron and sulphur to scaffold protei...
This work was supported by Marie Curie Postdoctoral Fellowships to T.A.W., E. H. and S. L., a Europe...
The NADH:ubiquinone oxidoreductase (respiratory complex I) is the main entry point for electrons int...
AbstractWe have cloned the gene that encodes subunit 4 of the T. bruceicytochrome-c reductase comple...
Iron-sulfur (Fe-S) clusters are inorganic cofactors found throughout all domains of life. These clus...
Many essential cellular proteins use iron-sulfur (Fe-S) clusters as cofactors. These proteins often ...
AbstractIn order to identify the ligand residues of the [2Fe-2S] cluster of the 25 kDa (NQO2) subuni...
Iron-sulfur (Fe-S) clusters are cofactors essential for life. Though the proteins that function in t...
AbstractWe have isolated cDNA clones encoding an iron-sulfur polypeptide subunit of the mitochondria...
AbstractA polypeptide subunit of complex I from Neurospora crassa, homologous to bovine TYKY, was ex...
The genes encoding the 21 kDa protein and the 19.3 kDa, 21.3 kDa and 24 kDa iron-sulfur subunits of ...
AbstractProteins containing iron–sulfur (Fe–S) clusters arose early in evolution and are essential t...
AbstractIscA homologs are known to be involved in iron–sulfur cluster formation in various organisms...
The chemical and electronic variability of Fe-S clusters are surely key factors for why these cofact...
Iron-sulfur (Fe/S) clusters are inorganic cofactors of many proteins found in nearly all prokaryotic...
Iron-sulphur cluster biogenesis requires coordinated delivery of iron and sulphur to scaffold protei...
This work was supported by Marie Curie Postdoctoral Fellowships to T.A.W., E. H. and S. L., a Europe...
The NADH:ubiquinone oxidoreductase (respiratory complex I) is the main entry point for electrons int...
AbstractWe have cloned the gene that encodes subunit 4 of the T. bruceicytochrome-c reductase comple...
Iron-sulfur (Fe-S) clusters are inorganic cofactors found throughout all domains of life. These clus...
Many essential cellular proteins use iron-sulfur (Fe-S) clusters as cofactors. These proteins often ...
AbstractIn order to identify the ligand residues of the [2Fe-2S] cluster of the 25 kDa (NQO2) subuni...
Iron-sulfur (Fe-S) clusters are cofactors essential for life. Though the proteins that function in t...