The contraction of striated muscle (skeletal and cardiac muscle) is generated by ATP- dependent interactions between the molecular motor myosin II and the actin filament. The myosin motors are mechanically coupled along the thick filament in a geometry not achievable by single-molecule experiments. Here we show that a synthetic one-dimensional nanomachine, comprising fewer than ten myosin II dimers purified from rabbit psoas, per- forms isometric and isotonic contractions at 2 mM ATP, delivering a maximum power of 5 aW. The results are explained with a kinetic model fitted to the performance of mammalian skeletal muscle, showing that the condition for the motor coordination that maximises the efficiency in striated muscle is a minimum of 32 myosin heads sharing a common mechanical ground. The nanomachine offers a powerful tool for investigating muscle contractile-protein physiology, pathology and pharmacology without the potentially disturbing effects of the cytoskeletal—and regulatory—protein environment.
A myosin II nanomachine mimicking the striated muscle / Pertici, Irene; Bongini, Lorenzo; Melli, Luca; Bianchi, Giulio; Salvi, Luca; Falorsi, Giulia; Squarci, Caterina; Bozó, Tamás; Cojoc, Dan; Kellermayer, Miklós S. Z.; Lombardi, Vincenzo*; Bianco, Pasquale. - In: NATURE COMMUNICATIONS. - ISSN 2041-1723. - ELETTRONICO. - 9:(2018), pp. 3532-3541. [10.1038/s41467-018-06073-9]
A myosin II nanomachine mimicking the striated muscle
Pertici, Irene;Melli, Luca;FALORSI, GIULIA;SQUARCI, CATERINA;Lombardi, Vincenzo;Bianco, Pasquale
2018
Abstract
The contraction of striated muscle (skeletal and cardiac muscle) is generated by ATP- dependent interactions between the molecular motor myosin II and the actin filament. The myosin motors are mechanically coupled along the thick filament in a geometry not achievable by single-molecule experiments. Here we show that a synthetic one-dimensional nanomachine, comprising fewer than ten myosin II dimers purified from rabbit psoas, per- forms isometric and isotonic contractions at 2 mM ATP, delivering a maximum power of 5 aW. The results are explained with a kinetic model fitted to the performance of mammalian skeletal muscle, showing that the condition for the motor coordination that maximises the efficiency in striated muscle is a minimum of 32 myosin heads sharing a common mechanical ground. The nanomachine offers a powerful tool for investigating muscle contractile-protein physiology, pathology and pharmacology without the potentially disturbing effects of the cytoskeletal—and regulatory—protein environment.File | Dimensione | Formato | |
---|---|---|---|
Pertci et al 2018.pdf
accesso aperto
Tipologia:
Pdf editoriale (Version of record)
Licenza:
Open Access
Dimensione
1.24 MB
Formato
Adobe PDF
|
1.24 MB | Adobe PDF |
I documenti in FLORE sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.