Ford L E, Nakagawa K, Desper J, Seow C Y
Department of Medicine, University of Chicago, Illinois 60637.
J Gen Physiol. 1991 Jan;97(1):73-88. doi: 10.1085/jgp.97.1.73.
The force-velocity relations of single glycerinated rabbit psoas muscle fibers at 5 degrees C were studied at maximum and half-maximum activation in the presence of 0 (control) and 39-145 g/liter dextran T-70. Resting fiber diameter decreased progressively to approximately 70% of the nondextran control as the dextran concentration was increased. Isometric force at full activation increased to a maximum of 136% of control at 111 g/liter dextran and then fell to 80% of control in 145 g/liter dextran. Maximum velocity, which fell to 49% of the control value in the highest concentration of dextran, was nearly constant at approximately 65% control over the range of 58-111 g/liter dextran. Relative maximum power, which gives an estimate of changes in intermediate velocity, was not significantly reduced by dextran concentrations up to 76 g/liter, but then fell progressively to 62% of control in the highest concentration of dextran. At half-maximum activation, maximum velocity and relative maximum power were not significantly different from the values at full activation. The results obtained at partial activation indicate that the decline of velocity seen in the presence of dextran is not due to a passive internal load and that the dextran does not cause a viscous resistance to shortening. The increased velocity in the absence of dextran can be explained by the reduced ability of cross-bridges to resist shortening, as proposed by Goldman (1987. Biophys. J. 51:57).
在5摄氏度下,研究了在0(对照)和39 - 145克/升葡聚糖T - 70存在时,单个甘油处理的兔腰大肌纤维在最大激活和半最大激活状态下的力 - 速度关系。随着葡聚糖浓度的增加,静息纤维直径逐渐减小至非葡聚糖对照的约70%。完全激活时的等长力在111克/升葡聚糖时增加至对照的最大值136%,然后在145克/升葡聚糖时降至对照的80%。最大速度在最高葡聚糖浓度下降至对照值的49%,在58 - 111克/升葡聚糖范围内,最大速度几乎恒定在对照值的约65%。相对最大功率可估算中间速度的变化,在葡聚糖浓度高达76克/升时,相对最大功率没有显著降低,但在最高葡聚糖浓度下逐渐降至对照的62%。在半最大激活时,最大速度和相对最大功率与完全激活时的值没有显著差异。部分激活时获得的结果表明,在葡聚糖存在下观察到的速度下降不是由于被动的内部负荷,并且葡聚糖不会对缩短产生粘性阻力。如Goldman(1987. Biophys. J. 51:57)所提出的,在没有葡聚糖时速度增加可以用横桥抵抗缩短的能力降低来解释。