AbstractNAD is not only an important cofactor in redox reactions but has also received attention in recent years because of its physiological importance in metabolic regulation, DNA repair and signaling. In contrast to the redox reactions, these regulatory processes involve degradation of NAD and therefore necessitate a constant replenishment of its cellular pool. NAD biosynthetic enzymes are common to almost all species in all clades, but the number of NAD degrading enzymes varies substantially across taxa. In particular, vertebrates, including humans, have a manifold of NAD degrading enzymes which require a high turnover of NAD. As there is currently a lack of a systematic study of how natural selection has shaped enzymes involved in NAD ...
NAD kinase (NADK) is the sole enzyme that phosphorylates nicotinamide adenine dinucleotide (NAD+/NAD...
Mounting evidence attests to the paramount importance of the non-redox NAD functions. Indeed, NAD ho...
A century after the identification of a coenzymatic activity for NAD(+), NAD(+) metabolism has come ...
NAD is not only an important cofactor in redox reactions but has also received attention in recent y...
NAD provides an important link between metabolism and signal transduction and has emerged as central...
Nicotinamide adenine dinucleotide (NAD) is a ubiquitous cofactor participating in numerous redox rea...
In addition to its role as a redox coenzyme, NAD is a substrate of various enzymes that split the mo...
Members of the cytochrome P450 family are important metabolic enzymes that are present in all metazo...
<div><p>Members of the cytochrome P450 family are important metabolic enzymes that are present in al...
<div><p>NAD is a ubiquitous and essential metabolic redox cofactor which also functions as a substra...
NAD is a ubiquitous and essential metabolic redox cofactor which also functions as a substrate in ce...
NAD is a ubiquitous and essential metabolic redox cofactor which also functions as a substrate in ce...
One of the most important events in vertebrate evolutionary history is the water-to-land transition,...
Nicotinamide Adenine Dinucleotide (NAD) levels are essential for cellular homeostasis and survival. ...
NAD metabolism is essential for all forms of life. Compartmental regulation of NAD(+) consumption, e...
NAD kinase (NADK) is the sole enzyme that phosphorylates nicotinamide adenine dinucleotide (NAD+/NAD...
Mounting evidence attests to the paramount importance of the non-redox NAD functions. Indeed, NAD ho...
A century after the identification of a coenzymatic activity for NAD(+), NAD(+) metabolism has come ...
NAD is not only an important cofactor in redox reactions but has also received attention in recent y...
NAD provides an important link between metabolism and signal transduction and has emerged as central...
Nicotinamide adenine dinucleotide (NAD) is a ubiquitous cofactor participating in numerous redox rea...
In addition to its role as a redox coenzyme, NAD is a substrate of various enzymes that split the mo...
Members of the cytochrome P450 family are important metabolic enzymes that are present in all metazo...
<div><p>Members of the cytochrome P450 family are important metabolic enzymes that are present in al...
<div><p>NAD is a ubiquitous and essential metabolic redox cofactor which also functions as a substra...
NAD is a ubiquitous and essential metabolic redox cofactor which also functions as a substrate in ce...
NAD is a ubiquitous and essential metabolic redox cofactor which also functions as a substrate in ce...
One of the most important events in vertebrate evolutionary history is the water-to-land transition,...
Nicotinamide Adenine Dinucleotide (NAD) levels are essential for cellular homeostasis and survival. ...
NAD metabolism is essential for all forms of life. Compartmental regulation of NAD(+) consumption, e...
NAD kinase (NADK) is the sole enzyme that phosphorylates nicotinamide adenine dinucleotide (NAD+/NAD...
Mounting evidence attests to the paramount importance of the non-redox NAD functions. Indeed, NAD ho...
A century after the identification of a coenzymatic activity for NAD(+), NAD(+) metabolism has come ...