Skeletal muscle performance determined by modulation of number of myosin motors rather than motor force or stroke size

被引:245
作者
Piazzesi, Gabriella
Reconditi, Massimo
Linari, Marco
Lucii, Leonardo
Bianco, Pasquale
Brunello, Elisabetta
Decostre, Valerie
Stewart, Alex
Gore, David B.
Irving, Thomas C.
Irving, Malcolm [1 ]
Lombardi, Vincenzo
机构
[1] Kings Coll London, Randall Div Cell & Mol Biophys, London SE1 1UL, England
[2] Univ Florence, Dipartimento Biol Anim & Genet, Lab Fisiol, I-50019 Sesto Fiorentino, Italy
[3] Univ Roma La Sapienza, CRS SOFT INFM CNR, I-00185 Rome, Italy
[4] Dexela Ltd, Spitfire Studios, London N1 9BE, England
[5] BioCAT, Adv Photon Source, Argonne, IL 60439 USA
关键词
D O I
10.1016/j.cell.2007.09.045
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Skeletal muscle can bear a high load at constant length, or shorten rapidly when the load is low. This force-velocity relationship is the primary determinant of muscle performance in vivo. Here we exploited the quasi-crystalline order of myosin II motors in muscle filaments to determine the molecular basis of this relationship by X-ray interference and mechanical measurements on intact single cells. We found that, during muscle shortening at a wide range of velocities, individual myosin motors maintain a force of about 6 pN while pulling an actin filament through a 6 nm stroke, then quickly detach when the motor reaches a critical conformation. Thus we show that the force-velocity relationship is primarily a result of a reduction in the number of motors attached to actin in each filament in proportion to the filament load. These results explain muscle performance and efficiency in terms of the molecular mechanism of the myosin motor.
引用
收藏
页码:784 / 795
页数:12
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