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Mitochondrial network configuration influences sarcomere and myosin filament structure in striated muscles
by
Ajayi, Peter T.
, Glancy, Brian
, Kim, Yuho
, Hall, Alexander S.
, Bleck, Christopher K. E.
, Parry, Hailey A.
, Willingham, T. Bradley
, Katti, Prasanna
, Wen, Han
in
14/19
/ 14/28
/ 14/34
/ 631/136/2060/2068
/ 631/57/1464
/ 631/80/642/333/1465
/ 64/24
/ 64/60
/ 692/698/1671/1668/1973
/ Actin
/ Actins - metabolism
/ Adenosine triphosphate
/ Adenosine Triphosphate - metabolism
/ Animals
/ ATP
/ Configurations
/ Filaments
/ Humanities and Social Sciences
/ Humans
/ Mathematical analysis
/ Mice
/ Mitochondria
/ multidisciplinary
/ Muscle Contraction
/ Muscle, Striated - metabolism
/ Muscles
/ Muscular function
/ Myosin
/ Myosins - metabolism
/ Sarcomeres
/ Sarcomeres - metabolism
/ Sarcoplasmic reticulum
/ Science
/ Science (multidisciplinary)
/ Skeletal muscle
2022
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Mitochondrial network configuration influences sarcomere and myosin filament structure in striated muscles
by
Ajayi, Peter T.
, Glancy, Brian
, Kim, Yuho
, Hall, Alexander S.
, Bleck, Christopher K. E.
, Parry, Hailey A.
, Willingham, T. Bradley
, Katti, Prasanna
, Wen, Han
in
14/19
/ 14/28
/ 14/34
/ 631/136/2060/2068
/ 631/57/1464
/ 631/80/642/333/1465
/ 64/24
/ 64/60
/ 692/698/1671/1668/1973
/ Actin
/ Actins - metabolism
/ Adenosine triphosphate
/ Adenosine Triphosphate - metabolism
/ Animals
/ ATP
/ Configurations
/ Filaments
/ Humanities and Social Sciences
/ Humans
/ Mathematical analysis
/ Mice
/ Mitochondria
/ multidisciplinary
/ Muscle Contraction
/ Muscle, Striated - metabolism
/ Muscles
/ Muscular function
/ Myosin
/ Myosins - metabolism
/ Sarcomeres
/ Sarcomeres - metabolism
/ Sarcoplasmic reticulum
/ Science
/ Science (multidisciplinary)
/ Skeletal muscle
2022
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Mitochondrial network configuration influences sarcomere and myosin filament structure in striated muscles
by
Ajayi, Peter T.
, Glancy, Brian
, Kim, Yuho
, Hall, Alexander S.
, Bleck, Christopher K. E.
, Parry, Hailey A.
, Willingham, T. Bradley
, Katti, Prasanna
, Wen, Han
in
14/19
/ 14/28
/ 14/34
/ 631/136/2060/2068
/ 631/57/1464
/ 631/80/642/333/1465
/ 64/24
/ 64/60
/ 692/698/1671/1668/1973
/ Actin
/ Actins - metabolism
/ Adenosine triphosphate
/ Adenosine Triphosphate - metabolism
/ Animals
/ ATP
/ Configurations
/ Filaments
/ Humanities and Social Sciences
/ Humans
/ Mathematical analysis
/ Mice
/ Mitochondria
/ multidisciplinary
/ Muscle Contraction
/ Muscle, Striated - metabolism
/ Muscles
/ Muscular function
/ Myosin
/ Myosins - metabolism
/ Sarcomeres
/ Sarcomeres - metabolism
/ Sarcoplasmic reticulum
/ Science
/ Science (multidisciplinary)
/ Skeletal muscle
2022
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Mitochondrial network configuration influences sarcomere and myosin filament structure in striated muscles
Journal Article
Mitochondrial network configuration influences sarcomere and myosin filament structure in striated muscles
2022
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Overview
Sustained muscle contraction occurs through interactions between actin and myosin filaments within sarcomeres and requires a constant supply of adenosine triphosphate (ATP) from nearby mitochondria. However, it remains unclear how different physical configurations between sarcomeres and mitochondria alter the energetic support for contractile function. Here, we show that sarcomere cross-sectional area (CSA) varies along its length in a cell type-dependent manner where the reduction in Z-disk CSA relative to the sarcomere center is closely coordinated with mitochondrial network configuration in flies, mice, and humans. Further, we find myosin filaments near the sarcomere periphery are curved relative to interior filaments with greater curvature for filaments near mitochondria compared to sarcoplasmic reticulum. Finally, we demonstrate variable myosin filament lattice spacing between filament ends and filament centers in a cell type-dependent manner. These data suggest both sarcomere structure and myofilament interactions are influenced by the location and orientation of mitochondria within muscle cells.
How different physical configurations between sarcomeres and mitochondria alter energetic support for contractile function of skeletal muscle is not clear. Here the authors use advanced 3D imaging and analysis techniques to show how space is made for mitochondria within the tightly packed sarcomere networks of striated muscle cells.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
/ 14/28
/ 14/34
/ 64/24
/ 64/60
/ Actin
/ Adenosine Triphosphate - metabolism
/ Animals
/ ATP
/ Humanities and Social Sciences
/ Humans
/ Mice
/ Muscle, Striated - metabolism
/ Muscles
/ Myosin
/ Science
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