Age-related mitochondrial dysfunction is thought to contribute to mammalian aging, particularly in postmitotic tissues that rely heavily on oxidative phosphorylation. A new study (Gomes et al., 2013) shows that reduced levels of nicotinamide adenine dinucleotide (NAD+) contribute to the mitochondrial decay associated with skeletal muscle aging and that sirtuin 1 (SIRT1) modulates this process
The coupling of nicotinamide adenine dinucleotide (NAD⁺) breakdown and protein deacylation is a uniq...
The progressive decline of muscle mass and function called sarcopenia is a multi-factorial process a...
Oxidative stress and decreased DNA damage repair in vertebrates increase with age also due to lowere...
Age-related mitochondrial dysfunction is thought to contribute to mammalian aging, particularly in p...
NAD(+) is an important cofactor regulating metabolic homeostasis and a rate-limiting substrate for s...
SummaryNAD+ is an important cofactor regulating metabolic homeostasis and a rate-limiting substrate ...
As we age and across various types of disease, levels of the molecule NAD+ (nicoti- namide adenine d...
Skeletal muscle is greatly affected by aging, resulting in a loss of metabolic and physical function...
Skeletal muscle is greatly affected by aging, resulting in a loss of metabolic and physical function...
Skeletal muscle is greatly affected by aging, resulting in a loss of metabolic and physical function...
Skeletal muscle is greatly affected by aging, resulting in a loss of metabolic and physical function...
SummaryEver since eukaryotes subsumed the bacterial ancestor of mitochondria, the nuclear and mitoch...
SummaryA major cause of cell death caused by genotoxic stress is thought to be due to the depletion ...
Diseases due to DNA damage repair machinery defects can resemble premature aging. In this issue of C...
Nicotinamide adenine dinucleotide (NAD+) represents an essential cofactor in sustaining cellular bio...
The coupling of nicotinamide adenine dinucleotide (NAD⁺) breakdown and protein deacylation is a uniq...
The progressive decline of muscle mass and function called sarcopenia is a multi-factorial process a...
Oxidative stress and decreased DNA damage repair in vertebrates increase with age also due to lowere...
Age-related mitochondrial dysfunction is thought to contribute to mammalian aging, particularly in p...
NAD(+) is an important cofactor regulating metabolic homeostasis and a rate-limiting substrate for s...
SummaryNAD+ is an important cofactor regulating metabolic homeostasis and a rate-limiting substrate ...
As we age and across various types of disease, levels of the molecule NAD+ (nicoti- namide adenine d...
Skeletal muscle is greatly affected by aging, resulting in a loss of metabolic and physical function...
Skeletal muscle is greatly affected by aging, resulting in a loss of metabolic and physical function...
Skeletal muscle is greatly affected by aging, resulting in a loss of metabolic and physical function...
Skeletal muscle is greatly affected by aging, resulting in a loss of metabolic and physical function...
SummaryEver since eukaryotes subsumed the bacterial ancestor of mitochondria, the nuclear and mitoch...
SummaryA major cause of cell death caused by genotoxic stress is thought to be due to the depletion ...
Diseases due to DNA damage repair machinery defects can resemble premature aging. In this issue of C...
Nicotinamide adenine dinucleotide (NAD+) represents an essential cofactor in sustaining cellular bio...
The coupling of nicotinamide adenine dinucleotide (NAD⁺) breakdown and protein deacylation is a uniq...
The progressive decline of muscle mass and function called sarcopenia is a multi-factorial process a...
Oxidative stress and decreased DNA damage repair in vertebrates increase with age also due to lowere...