Bordas J, Svensson A, Rothery M, Lowy J, Diakun G P, Boesecke P
LLS-IFAE, Universitat Aut-noma de Barcelona, E-08193 Bellaterra, Barcelona, Spain.
Biophys J. 1999 Dec;77(6):3197-207. doi: 10.1016/S0006-3495(99)77150-X.
When isometrically contracting muscles are subjected to a quick release followed by a shortening ramp of appropriate speed (V(o)), tension decays from its value at the isometric plateau (P(o)) to <0. 05 P(o) with the same time course as the quick part of the release; thereafter, tension remains at a negligible level for the duration of the shortening ramp. X-ray diffraction data obtained under these conditions provide evidence that 1) at V(o) very few heads form an actomyosin complex, while the number of heads doing so at P(o) is significant; 2) relative to rest the actin filament at V(o) is approximately 0.12% shorter and more twisted, while it is approximately 0.3% longer and less twisted at P(o); and 3) the myosin heads attaching to actin during force development do so against a thin filament compliance of at least 0.646 +/- 0.046% nm per P(o).
当等长收缩的肌肉受到快速释放,随后以适当速度(V(o))进行缩短斜坡运动时,张力从等长平台期的值(P(o))衰减至<0.05 P(o),其时间进程与释放的快速部分相同;此后,在缩短斜坡运动期间,张力保持在可忽略不计的水平。在这些条件下获得的X射线衍射数据表明:1)在V(o)时,很少有头部形成肌动球蛋白复合物,而在P(o)时形成复合物的头部数量显著;2)相对于静止状态,在V(o)时肌动蛋白丝大约短0.12%且扭曲程度更大,而在P(o)时大约长0.3%且扭曲程度更小;3)在力量产生过程中附着于肌动蛋白的肌球蛋白头部是在每P(o)至少0.646 +/- 0.046% nm的细肌丝顺应性下进行附着的。
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