BACKGROUND: Hexose-6-Phosphate Dehydrogenase (H6PD) is a generator of NADPH in the Endoplasmic/Sarcoplasmic Reticulum (ER/SR). Interaction of H6PD with 11β-hydroxysteroid dehydrogenase type 1 provides NADPH to support oxo-reduction of inactive to active glucocorticoids, but the wider understanding of H6PD in ER/SR NAD(P)(H) homeostasis is incomplete. Lack of H6PD results in a deteriorating skeletal myopathy, altered glucose homeostasis, ER stress and activation of the unfolded protein response. Here we further assess muscle responses to H6PD deficiency to delineate pathways that may underpin myopathy and link SR redox status to muscle wide metabolic adaptation. METHODS: We analysed skeletal muscle from H6PD knockout (H6PDKO), H6PD and NRK2 ...
Objective: NAD+ is a co-factor and substrate for enzymes maintaining energy homeostasis. Nicotinamid...
Objective: A decay in intracellular NAD(+) levels is one of the hallmarks of physiological decline i...
Skeletal muscle plays a central role in maintaining metabolic homeostasis in health and disease. An ...
BACKGROUND: Hexose-6-Phosphate Dehydrogenase (H6PD) is a generator of NADPH in the Endoplasmic/Sarco...
Background Hexose-6-Phosphate Dehydrogenase (H6PD) is a generator of NADPH in the Endoplasmic/Sarcop...
Background: Hexose-6-Phosphate Dehydrogenase (H6PD) is a generator of NADPH in the Endoplasmic/Sarco...
Skeletal muscle is a major site of energy metabolism and critical to metabolic health. Bioavailabili...
OBJECTIVE: Augmenting nicotinamide adenine dinucleotide (NAD(+)) availability may protect skeletal m...
The progressive decline of muscle mass and function called sarcopenia is a multi-factorial process a...
Neuromuscular diseases are often caused by inherited mutations that lead to progressive skeletal mus...
NAD+ has emerged as a central metabolic node and an important co-substrate for the activity of vario...
Mammalian skeletal muscle is a highly dynamic organ capable of structural and metabolic remodeling i...
Biosynthetic precursors of NAD+ can replenish a decreased cellular NAD+ pool and, supposedly via sir...
International audienceBackground: Skeletal muscle aging is marked by the development of a sarcopenic...
Supplementation with the NAD(+) precursor nicotinamide riboside (NR) ameliorates and prevents a broa...
Objective: NAD+ is a co-factor and substrate for enzymes maintaining energy homeostasis. Nicotinamid...
Objective: A decay in intracellular NAD(+) levels is one of the hallmarks of physiological decline i...
Skeletal muscle plays a central role in maintaining metabolic homeostasis in health and disease. An ...
BACKGROUND: Hexose-6-Phosphate Dehydrogenase (H6PD) is a generator of NADPH in the Endoplasmic/Sarco...
Background Hexose-6-Phosphate Dehydrogenase (H6PD) is a generator of NADPH in the Endoplasmic/Sarcop...
Background: Hexose-6-Phosphate Dehydrogenase (H6PD) is a generator of NADPH in the Endoplasmic/Sarco...
Skeletal muscle is a major site of energy metabolism and critical to metabolic health. Bioavailabili...
OBJECTIVE: Augmenting nicotinamide adenine dinucleotide (NAD(+)) availability may protect skeletal m...
The progressive decline of muscle mass and function called sarcopenia is a multi-factorial process a...
Neuromuscular diseases are often caused by inherited mutations that lead to progressive skeletal mus...
NAD+ has emerged as a central metabolic node and an important co-substrate for the activity of vario...
Mammalian skeletal muscle is a highly dynamic organ capable of structural and metabolic remodeling i...
Biosynthetic precursors of NAD+ can replenish a decreased cellular NAD+ pool and, supposedly via sir...
International audienceBackground: Skeletal muscle aging is marked by the development of a sarcopenic...
Supplementation with the NAD(+) precursor nicotinamide riboside (NR) ameliorates and prevents a broa...
Objective: NAD+ is a co-factor and substrate for enzymes maintaining energy homeostasis. Nicotinamid...
Objective: A decay in intracellular NAD(+) levels is one of the hallmarks of physiological decline i...
Skeletal muscle plays a central role in maintaining metabolic homeostasis in health and disease. An ...