Flavoproteins are key players in numerous redox pathways in cells. Flavin cofactors FMN and FAD confer the required chemical reactivity to flavoenzymes. In most cases, the interaction between the proteins and the flavins is noncovalent, yet stronger in comparison to other redox-active cofactors, such as NADH and NADPH. The association is considered static, but this view has started to change with the recent discovery of the dynamic association of flavins and flavoenzymes. Six cases from different organisms and various metabolic pathways are discussed here. The available mechanistic details span the range from rudimentary, as in the case of the ER-resident oxidoreductase Ero1, to comprehensive, as for the bacterial respiratory complex I. The...
The VAO flavoprotein family is a rapidly growing family of oxidoreductases that favor the covalent b...
Enzymes known as bifunctional and bimodular prokaryotic type-I FAD synthetase (FADS) exhibit ATP:rib...
The biosynthesis of the flavin mononucleotide (FMN) and flavin adenine dinucleotide (FAD), cofactors...
AbstractComplex II (also known as Succinate dehydrogenase or Succinate–ubiquinone oxidoreductase) is...
Flavoenzymes are omnipresent in nature and are involved in many cellular processes. Flavoenzymes typ...
Flavins are the most versatile enzyme cofactors and their unparalleled flexibility has been exploite...
Flavoproteins are of key importance to all life on earth for both primary and secondary metabolism. ...
The recent determination of the amino acid sequences of the Bacillus megaterium cytochrome P-450 and...
The reactivity of flavoenzymes with dioxygen is at the heart of a number of biochemical reactions wi...
The primary role of the water-soluble vitamin B2 (riboflavin) in cell biology is connected with its ...
Over time, organisms have evolved strategies to cope with the abundance of dioxygen on Earth. Oxygen...
International audienceActVB is the NADH:flavin oxidoreductase participating in the last step of acti...
Enzymes catalysing sequential reactions have developed different mechanisms to control the transport...
<p>The research on flavins and flavoproteins started in 1879 with the discovery of the yellow ...
The VAO flavoprotein family is a rapidly growing family of oxidoreductases that favor the covalent b...
Enzymes known as bifunctional and bimodular prokaryotic type-I FAD synthetase (FADS) exhibit ATP:rib...
The biosynthesis of the flavin mononucleotide (FMN) and flavin adenine dinucleotide (FAD), cofactors...
AbstractComplex II (also known as Succinate dehydrogenase or Succinate–ubiquinone oxidoreductase) is...
Flavoenzymes are omnipresent in nature and are involved in many cellular processes. Flavoenzymes typ...
Flavins are the most versatile enzyme cofactors and their unparalleled flexibility has been exploite...
Flavoproteins are of key importance to all life on earth for both primary and secondary metabolism. ...
The recent determination of the amino acid sequences of the Bacillus megaterium cytochrome P-450 and...
The reactivity of flavoenzymes with dioxygen is at the heart of a number of biochemical reactions wi...
The primary role of the water-soluble vitamin B2 (riboflavin) in cell biology is connected with its ...
Over time, organisms have evolved strategies to cope with the abundance of dioxygen on Earth. Oxygen...
International audienceActVB is the NADH:flavin oxidoreductase participating in the last step of acti...
Enzymes catalysing sequential reactions have developed different mechanisms to control the transport...
<p>The research on flavins and flavoproteins started in 1879 with the discovery of the yellow ...
The VAO flavoprotein family is a rapidly growing family of oxidoreductases that favor the covalent b...
Enzymes known as bifunctional and bimodular prokaryotic type-I FAD synthetase (FADS) exhibit ATP:rib...
The biosynthesis of the flavin mononucleotide (FMN) and flavin adenine dinucleotide (FAD), cofactors...