NAD kinase (NADK) is the sole enzyme that phosphorylates nicotinamide adenine dinucleotide (NAD+/NADH) into NADP+/NADPH, which provides the chemical reducing power in anabolic (biosynthetic) pathways. While prokaryotes typically encode a single NADK, eukaryotes encode multiple NADKs. How these different NADK genes are all related to each other and those of prokaryotes is not known. Here we conduct phylogenetic analysis of NADK genes and identify major clade-defining patterns of NADK evolution. First, almost all eukaryotic NADK genes belong to one of two ancient eukaryotic sister clades corresponding to cytosolic ("cyto") and mitochondrial ("mito") clades. Secondly, we find that the cyto-clade NADK gene is duplicated in connection with loss ...
Deoxyribonucleoside kinases (dNKs) are important to DNA metabolism, especially in environments where...
The origin of eukaryotes remains a fundamental question in evolutionary biology. Although it is clea...
NAD and NADP, both major carriers of cellular reducing equivalents, are of vital importance in diver...
NAD+ is an essential molecule for life, present in each living cell. It can function as an electron ...
Phylogenetic analysis reveals that the use of nicotinamide adenine dinucleotide phosphate (NADP) by ...
Nicotinamide adenine dinucleotides (NAD(H)) and NAD phosphates (NADP(H)) are electron carriers invol...
AbstractNAD is not only an important cofactor in redox reactions but has also received attention in ...
The biological toolkits for aerobic respiration were critical for the rise and diversification of ea...
NAD is not only an important cofactor in redox reactions but has also received attention in recent y...
A question of great interest in evolutionary biology is how and why the eukaryotic cell evolved. Sev...
Eukaryotic Protein Kinases (ePKs) are essential for eukaryotic cell signalling. Several phylogenetic...
Chloroplasts arose from cyanobacteria, mitochondria arose from proteobacteria. Both organelles have ...
<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...
Deoxyribonucleoside kinases (dNKs) are important to DNA metabolism, especially in environments where...
The origin of eukaryotes remains a fundamental question in evolutionary biology. Although it is clea...
NAD and NADP, both major carriers of cellular reducing equivalents, are of vital importance in diver...
NAD+ is an essential molecule for life, present in each living cell. It can function as an electron ...
Phylogenetic analysis reveals that the use of nicotinamide adenine dinucleotide phosphate (NADP) by ...
Nicotinamide adenine dinucleotides (NAD(H)) and NAD phosphates (NADP(H)) are electron carriers invol...
AbstractNAD is not only an important cofactor in redox reactions but has also received attention in ...
The biological toolkits for aerobic respiration were critical for the rise and diversification of ea...
NAD is not only an important cofactor in redox reactions but has also received attention in recent y...
A question of great interest in evolutionary biology is how and why the eukaryotic cell evolved. Sev...
Eukaryotic Protein Kinases (ePKs) are essential for eukaryotic cell signalling. Several phylogenetic...
Chloroplasts arose from cyanobacteria, mitochondria arose from proteobacteria. Both organelles have ...
<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...
Deoxyribonucleoside kinases (dNKs) are important to DNA metabolism, especially in environments where...
The origin of eukaryotes remains a fundamental question in evolutionary biology. Although it is clea...
NAD and NADP, both major carriers of cellular reducing equivalents, are of vital importance in diver...