Skeletal muscle is a key tissue in human aging, which affects different muscle fiber types unequally. We developed a highly sensitive single muscle fiber proteomics workflow to study human aging and show that the senescence of slow and fast muscle fibers is characterized by diverging metabolic and protein quality control adaptations. Whereas mitochondrial content declines with aging in both fiber types, glycolysis and glycogen metabolism are upregulated in slow but downregulated in fast muscle fibers. Aging mitochondria decrease expression of the redox enzyme monoamine oxidase A. Slow fibers upregulate a subset of actin and myosin chaperones, whereas an opposite change happens in fast fibers. These changes in metabolism and sarcomere qualit...
Abstract Background: Human skeletal muscle is composed of three major fiber types, referred to as...
Mammalian skeletal muscles are composed of multinucleated cells termed slow or fast fibers according...
Traditional methods for phenotyping skeletal muscle (e.g., immunohistochemistry) are labor-intensive...
Skeletal muscle is a key tissue in human aging, which affects different muscle fiber types unequally...
Mammalian skeletal muscles are composed of multinucleated cells termed slow or fast fibers according...
Aging significantly influences the proteomic structure of the cell as well as the nervous component....
Skeletal muscle plasticity involves the transition of muscle fibers through different structural and...
Contractile weakness and loss of muscle mass are critical features of the aging process in mammalian...
Extended longevity is often accompanied by frailty and increased susceptibility to a variety of crip...
The progressive loss of skeletal muscle mass and concomitant reduction in contractile strength plays...
The age-dependent decline in skeletal muscle mass and function is believed to be due to a multi-fact...
To perform their diverse tasks, skeletal muscles employ four different fiber types, one type 1/slow ...
Introduction: Skeletal muscle tissue is a complex and very important organ for movement, metabolism ...
Old age is associated with a large spectrum of physical ailments, including muscle wasting. Skeletal...
The age-related loss of skeletal muscle mass and associated progressive decline in contractile stre...
Abstract Background: Human skeletal muscle is composed of three major fiber types, referred to as...
Mammalian skeletal muscles are composed of multinucleated cells termed slow or fast fibers according...
Traditional methods for phenotyping skeletal muscle (e.g., immunohistochemistry) are labor-intensive...
Skeletal muscle is a key tissue in human aging, which affects different muscle fiber types unequally...
Mammalian skeletal muscles are composed of multinucleated cells termed slow or fast fibers according...
Aging significantly influences the proteomic structure of the cell as well as the nervous component....
Skeletal muscle plasticity involves the transition of muscle fibers through different structural and...
Contractile weakness and loss of muscle mass are critical features of the aging process in mammalian...
Extended longevity is often accompanied by frailty and increased susceptibility to a variety of crip...
The progressive loss of skeletal muscle mass and concomitant reduction in contractile strength plays...
The age-dependent decline in skeletal muscle mass and function is believed to be due to a multi-fact...
To perform their diverse tasks, skeletal muscles employ four different fiber types, one type 1/slow ...
Introduction: Skeletal muscle tissue is a complex and very important organ for movement, metabolism ...
Old age is associated with a large spectrum of physical ailments, including muscle wasting. Skeletal...
The age-related loss of skeletal muscle mass and associated progressive decline in contractile stre...
Abstract Background: Human skeletal muscle is composed of three major fiber types, referred to as...
Mammalian skeletal muscles are composed of multinucleated cells termed slow or fast fibers according...
Traditional methods for phenotyping skeletal muscle (e.g., immunohistochemistry) are labor-intensive...