Knight P J, Fortune N S, Geeves M A
Department of Veterinary Medicine, University of Bristol, Langford, United Kingdom.
Biophys J. 1993 Aug;65(2):814-22. doi: 10.1016/S0006-3495(93)81111-1.
When skeletal muscle fibers are subjected to a hydrostatic pressure of 10 MPa (100 atmospheres), reversible changes in tension occur. Passive tension from relaxed muscle is unaffected, rigor tension rises, and active tension falls. The effects of pressure on muscle structure are unknown: therefore a pressure-resistant cell for x-ray diffraction has been built, and this paper reports the first study of the low-angle equatorial patterns of pressurized relaxed, rigor, and active muscle fibers, with direct comparisons from the same chemically skinned rabbit psoas muscle fibers at 0.1 and 10 MPa. Relaxed and rigor fibers show little change in the intensity of the equatorial reflections when pressurized to 10 MPa, but there is a small, reversible expansion of the lattice of 0.7 and 0.4%, respectively. This shows that the order and stability of the myofilament lattice is undisturbed by this pressure. The rise in rigor tension under pressure is thus probably due to axial shortening of one or more components of the sarcomere. Initial results from active fibers at 0.1 MPa show that when phosphate is added the lattice spacing and equatorial intensities change toward their relaxed values. This indicates cross-bridge detachment, as expected from the reduction in tension that phosphate induces. 10 MPa in the presence of phosphate at 11 degrees C causes tension to fall by a further 12%, but not change is detected in the relative intensity of the reflections, only a small increase in lattice spacing. Thus pressure appears to increase the proportion of attached cross-bridges in a low-force state.
当骨骼肌纤维受到10兆帕(100个大气压)的静水压力时,张力会发生可逆变化。松弛肌肉的被动张力不受影响,强直张力升高,主动张力下降。压力对肌肉结构的影响尚不清楚:因此构建了一个用于X射线衍射的耐压细胞,本文报道了对加压的松弛、强直和主动肌纤维低角度赤道图案的首次研究,并对来自同一只化学去膜兔腰大肌纤维在0.1和10兆帕下进行了直接比较。当加压至10兆帕时,松弛和强直纤维的赤道反射强度变化不大,但晶格分别有0.7%和0.4%的小幅度可逆扩展。这表明肌丝晶格的有序性和稳定性不受此压力干扰。因此,压力下强直张力的升高可能是由于肌节一个或多个成分的轴向缩短。0.1兆帕下主动纤维的初步结果表明,添加磷酸盐后,晶格间距和赤道强度向其松弛值变化。这表明横桥解离,正如磷酸盐诱导的张力降低所预期的那样。在11摄氏度存在磷酸盐的情况下,10兆帕会使张力进一步下降12%,但在反射的相对强度中未检测到变化,仅晶格间距有小幅增加。因此,压力似乎增加了处于低力状态的附着横桥的比例。