Maw M C, Rowe A J
J Muscle Res Cell Motil. 1986 Apr;7(2):97-109. doi: 10.1007/BF01753410.
Using rabbit psoas muscle strips, A-bands with their myosin-containing thick filaments have been substantially reconstructed in situ (as judged by electron and light microscopy and by low-angle X-ray diffraction analysis) after prior solubilization of the myosin filaments in high ionic strength potassium phosphate solution. The maintenance of a very high local concentration of soluble myosin, by means of a closely apposed artificial semi-permeable membrane is necessary for reconstruction of full-length filaments. This reconstruction effect can be totally abolished by pre-glycerolation of the muscle, or (reversibly) by pre-depletion of Ca2+. Reconstruction at longer sarcomere lengths (greater than 2.6 micron) is anomalous, part-length 'stub filaments' being formed, with their stub tails projecting out from the I-Z-I lattice. A model is proposed to explain this reconstruction effect.
使用兔腰大肌肌条,在高离子强度磷酸钾溶液中使肌球蛋白丝先溶解后,通过电子显微镜、光学显微镜以及低角度X射线衍射分析判断,含有肌球蛋白的粗丝所在的A带已在原位基本重建。借助紧密贴合的人工半透膜维持非常高的可溶性肌球蛋白局部浓度,对于全长丝的重建是必要的。这种重建效应可通过肌肉的预甘油化完全消除,或(可逆地)通过预先耗尽Ca2+消除。在较长肌节长度(大于2.6微米)时的重建是异常的,会形成部分长度的“短粗丝”,其短粗尾部从I-Z-I晶格中伸出。提出了一个模型来解释这种重建效应。