Abstract Background The prokaryotic FAD synthetase family – a group of bifunctional enzymes that catalyse riboflavin phosphorylation and FMN adenylylation within a single polypeptide chain- was analysed in terms of sequence and structure. Results Sequences of nearly 800 prokaryotic species were aligned. Those related with bifunctional FAD synthetase activities showed conservation of several consensus regions and highly conserved residues. A 3D model for the FAD synthetase from Corynebacterium ammoniagenes (CaFADS) was generated. This model confirms that the N-terminal and C-terminal domains are related to nucleotydyltransferases and riboflavin kinases, respectively. Models for the interaction of CaFADS with its substrates were also produced...
Flavin adenine dinucleotide synthetases (FADSs) are well-known as a group of prokaryotic bifunctiona...
Prokaryotic bifunctional FAD synthetases (FADSs) catalyze the biosynthesis of FMN and FAD, whereas i...
FAD synthase (FADS, EC 2.7.7.2) is a key enzyme in the metabolic pathway that converts riboflavin in...
Riboflavin kinases (RFKs) catalyse the phosphorylation of riboflavin to produce FMN. In most bacteri...
26 pags, 5 figs, 3 tabsIn mammals and in yeast the conversion of Riboflavin (RF) into flavin mononuc...
14 pags, 7 figs, 3 tabsEnzymes known as bifunctional and bimodular prokaryotic type-I FAD synthetase...
Enzymes known as bifunctional and bimodular prokaryotic type-I FAD synthetase (FADS) exhibit ATP:rib...
The FAD synthetase (FADs) from prokaryotes is a bifunctional protein that synthesizes FMN and FAD fr...
Biosynthesis of flavin adenine dinucleotides in most prokaryotes is catalyzed by a family of bifunct...
Bifunctional FAD synthases (FADSs) catalyze FMN (flavin mononucleotide) and FAD (flavinadenine dinuc...
Flavin mononucleotide (FMN) and flavin-adenine dinucleotide (FAD) are essential flavoprotein cofacto...
Flavin adenine dinucleotide synthetases (FADSs) catalyze FAD biosynthesis through two consecutive ca...
FAD synthase (FMN:ATP adenylyl transferase, FMNAT or FADS, EC 2.7.7.2) is involved in the biochemica...
The last step in the biosynthesis of flavin adenine dinucleotide (FAD) is considered a target for th...
Bifunctional FAD synthetases (FADSs) fold in two independent modules; The C-terminal riboflavin kina...
Flavin adenine dinucleotide synthetases (FADSs) are well-known as a group of prokaryotic bifunctiona...
Prokaryotic bifunctional FAD synthetases (FADSs) catalyze the biosynthesis of FMN and FAD, whereas i...
FAD synthase (FADS, EC 2.7.7.2) is a key enzyme in the metabolic pathway that converts riboflavin in...
Riboflavin kinases (RFKs) catalyse the phosphorylation of riboflavin to produce FMN. In most bacteri...
26 pags, 5 figs, 3 tabsIn mammals and in yeast the conversion of Riboflavin (RF) into flavin mononuc...
14 pags, 7 figs, 3 tabsEnzymes known as bifunctional and bimodular prokaryotic type-I FAD synthetase...
Enzymes known as bifunctional and bimodular prokaryotic type-I FAD synthetase (FADS) exhibit ATP:rib...
The FAD synthetase (FADs) from prokaryotes is a bifunctional protein that synthesizes FMN and FAD fr...
Biosynthesis of flavin adenine dinucleotides in most prokaryotes is catalyzed by a family of bifunct...
Bifunctional FAD synthases (FADSs) catalyze FMN (flavin mononucleotide) and FAD (flavinadenine dinuc...
Flavin mononucleotide (FMN) and flavin-adenine dinucleotide (FAD) are essential flavoprotein cofacto...
Flavin adenine dinucleotide synthetases (FADSs) catalyze FAD biosynthesis through two consecutive ca...
FAD synthase (FMN:ATP adenylyl transferase, FMNAT or FADS, EC 2.7.7.2) is involved in the biochemica...
The last step in the biosynthesis of flavin adenine dinucleotide (FAD) is considered a target for th...
Bifunctional FAD synthetases (FADSs) fold in two independent modules; The C-terminal riboflavin kina...
Flavin adenine dinucleotide synthetases (FADSs) are well-known as a group of prokaryotic bifunctiona...
Prokaryotic bifunctional FAD synthetases (FADSs) catalyze the biosynthesis of FMN and FAD, whereas i...
FAD synthase (FADS, EC 2.7.7.2) is a key enzyme in the metabolic pathway that converts riboflavin in...