Abstract Background Folate-dependent one-carbon metabolism provides one-carbon units for several biological processes. This pathway is highly compartmentalized in eukaryotes, with the mitochondrial pathway producing formate for use in cytoplasmic processes. The mitochondrial enzyme MTHFD2 has been reported to use NAD+ as a cofactor while the isozyme MTHFD2L utilizes NAD+ or NADP+ at physiologically relevant conditions. Because MTHFD2 is highly expressed in many cancer types, we sought to determine the cofactor preference of this enzyme. Results Kinetic analysis shows that purified human MTHFD2 exhibits dual redox cofactor specificity, utilizing either NADP+ or NAD+ with the more physiologically relevant pentaglutamate folate substrate. Conc...
<p>Folates require several transport systems to enter the cells, the best characterized being the re...
Mammalian folate metabolism is comprised of cytosolic and mitochondrial pathways with nearly identic...
Methylenetetrahydrofolate dehydrogenase/cyclohydrolase (MTHFD2) is a new drug target that is express...
Folate metabolism is central to cell proliferation and a target of commonly used cancer chemotherape...
Folate metabolism is central to cell proliferation and a target of commonly used cancer chemotherape...
Folate metabolism is central to cell proliferation and a target of commonly used cancer chemotherape...
Folate is required for the synthesis of nucleotides, the regeneration of methionine, and methylation...
Rapidly proliferating tumors attempt to meet the demands for nucleotide biosynthesis by upregulating...
Folate metabolism is compartmentalized between the cytoplasm and the mitochondria of mammalian cell...
AbstractWe present evidence for the presence of the folate metabolism enzyme methenyltetrahydrofolat...
Folate-dependent enzymes are compartmentalized between the cytoplasm and mitochondria of eukaryotic...
ATP is the dominant energy source in animals for mechanical and electrical work (for example, muscle...
ATP is the dominant energy source in animals for mechanical and electrical work (for example, muscle...
In Eukaryotes, folate-dependent one-carbon (1C) metabolism is a highly compartmentalized process in ...
Human mitochondrial NAD-dependent methylenetetrahydrofolate dehydrogenase-methenyltetrahydrofolate c...
<p>Folates require several transport systems to enter the cells, the best characterized being the re...
Mammalian folate metabolism is comprised of cytosolic and mitochondrial pathways with nearly identic...
Methylenetetrahydrofolate dehydrogenase/cyclohydrolase (MTHFD2) is a new drug target that is express...
Folate metabolism is central to cell proliferation and a target of commonly used cancer chemotherape...
Folate metabolism is central to cell proliferation and a target of commonly used cancer chemotherape...
Folate metabolism is central to cell proliferation and a target of commonly used cancer chemotherape...
Folate is required for the synthesis of nucleotides, the regeneration of methionine, and methylation...
Rapidly proliferating tumors attempt to meet the demands for nucleotide biosynthesis by upregulating...
Folate metabolism is compartmentalized between the cytoplasm and the mitochondria of mammalian cell...
AbstractWe present evidence for the presence of the folate metabolism enzyme methenyltetrahydrofolat...
Folate-dependent enzymes are compartmentalized between the cytoplasm and mitochondria of eukaryotic...
ATP is the dominant energy source in animals for mechanical and electrical work (for example, muscle...
ATP is the dominant energy source in animals for mechanical and electrical work (for example, muscle...
In Eukaryotes, folate-dependent one-carbon (1C) metabolism is a highly compartmentalized process in ...
Human mitochondrial NAD-dependent methylenetetrahydrofolate dehydrogenase-methenyltetrahydrofolate c...
<p>Folates require several transport systems to enter the cells, the best characterized being the re...
Mammalian folate metabolism is comprised of cytosolic and mitochondrial pathways with nearly identic...
Methylenetetrahydrofolate dehydrogenase/cyclohydrolase (MTHFD2) is a new drug target that is express...