Maréchal G, Plaghki L
J Gen Physiol. 1979 Apr;73(4):453-67. doi: 10.1085/jgp.73.4.453.
Frog sartorius muscles tetanized isometrically were released at a constant velocity from lengths lL to lS (delta l = lL -lS; Ls greater than lO). The tension PS redeveloped after the release was lower than the isometric tension PS at LS, and higher than the isometric tension PL at lL. The tension deficit D is defined as the difference PS-PS. The timing of the release during the tetanus did not influence D. D/PO was proportional to delta l/lO. The proportionality constant k was equal to 1.35 +/- 0.19 (n = 8) when the velocity of release was 2.5 mm/s. When the muscles were released the same delta l, D was found to be an exponential decreasing function of the velocity. The tension deficit was also found in experiments performed in the region lS less than lO. The proportionality constant k was smaller, but the influence of the velocity of the release on D was not modified. When the velocity of the release was changed during the release, D changed accordingly, showing that the effects of delta l and V are multiplicative. These facts suggest a working hypothesis based on the concept that the actin filaments which enter the overlap region during a release are strained by the tetanic stress and therefore unable to make normal cross-bridges.
对处于等长强直收缩状态的青蛙缝匠肌以恒定速度从长度lL释放至lS(Δl = lL - lS;Ls大于lO)。释放后重新产生的张力PS低于在LS时的等长张力PS,且高于在lL时的等长张力PL。张力亏缺D定义为PS - PS的差值。强直收缩期间释放的时机不影响D。D/PO与Δl/lO成正比。当释放速度为2.5 mm/s时,比例常数k等于1.35±0.19(n = 8)。当肌肉释放相同的Δl时,发现D是释放速度的指数递减函数。在lS小于lO的区域进行的实验中也发现了张力亏缺。比例常数k较小,但释放速度对D的影响未改变。当在释放过程中改变释放速度时,D相应改变,表明Δl和V的影响是相乘的。这些事实基于这样的概念提出了一个工作假设,即在释放过程中进入重叠区域的肌动蛋白丝受到强直应力的拉伸,因此无法形成正常的横桥。