April E W
J Mechanochem Cell Motil. 1975;3(2):111-21.
Accounts of similarities between the thick filament lattice of striated muscle and smectic liquid-crystalline structures have focused upon an equilibrium between electrostatic (repulsive) and van der Waal's (attractive) forces. In living, intact muscle the fiber volume constitutes an additional important parameter which influences the amount of interaxial separation between the filaments. This is demonstrable by comparison of the lattice behavior of living fibers with that of fibers from which the sarcolemma has either been removed or made leaky by glycerination. These comparisons were made mainly by low-angle X-ray diffraction under conditions of changes in sarcomere length, ionic strength or osmolarity, and pH. Single fibers with the sarcolemma removed and glycerinated muscle have lattices which behave in accord with equilibrium liquid-crystalline systems in which the thick filament spacing is determined by the balance between electrostatic and van der Waal's forces. Conversely, osmotic and shortening studies demonstrate that the living, intact muscle has a lattice which behaves in accord with the so-called non-equilibrium (volume-constrained) liquid-crystalline condition in which the interaxial separation between the thick filaments is solely due to the amount of volume available as determined by the Donnan steady-state across the sarcolemma.
关于横纹肌粗肌丝晶格与近晶型液晶结构之间相似性的描述,主要集中在静电(排斥)力和范德华(吸引)力之间的平衡上。在活的完整肌肉中,纤维体积是另一个重要参数,它会影响肌丝间轴间距的大小。这一点可以通过比较活纤维与经甘油处理后肌膜已被去除或变得渗漏的纤维的晶格行为来证明。这些比较主要是在肌节长度、离子强度、渗透压和pH值发生变化的条件下,通过低角度X射线衍射进行的。去除了肌膜的单纤维和甘油化肌肉的晶格行为符合平衡液晶系统,其中粗肌丝间距由静电和范德华力之间的平衡决定。相反,渗透压和缩短研究表明,活的完整肌肉具有一种晶格,其行为符合所谓的非平衡(体积受限)液晶状态,其中粗肌丝间的轴间距仅取决于由肌膜上的唐南稳态所决定的可用体积量。