Tameyasu T
Department of Physiology, Teikyo University School of Medicine, Tokyo, Japan.
Experientia. 1990 Jul 15;46(7):677-9. doi: 10.1007/BF01939931.
Changes in the profile of equatorial intensities of X-ray diffraction from an intact, anterior byssal retractor muscle (ABRM) of Mytilus were examined at rest, during contracture brought about by acetylcholine (ACh) and a subsequent rigor-like contraction caused by raising the tonicity of the external solution, and after returning the tonicity to normal. The results suggest that the cross-bridges formed between thick and thin actin filaments during the ACh-contracture were maintained in the hypertonic solution and broken on decreasing the tonicity before the recovery of spacing of the actin filament lattice. A similar rigor-like contraction was induced in glycerinated ABRM by increasing salt concentration during active contraction. The rigor-like force declined rapidly when Ca++ concentration decreased. The results suggest that the detachment of the cross-bridge from the actin filament is regulated by Ca++ at high ionic strength in the ABRM.
对贻贝完整的前足丝牵缩肌(ABRM)在静息状态、乙酰胆碱(ACh)引起挛缩期间、外部溶液张力升高导致随后的强直样收缩期间以及张力恢复正常后,X射线衍射赤道强度分布的变化进行了研究。结果表明,在ACh挛缩期间粗细肌动蛋白丝之间形成的横桥在高渗溶液中得以维持,并在肌动蛋白丝晶格间距恢复之前,随着张力降低而断裂。在甘油化的ABRM中,在主动收缩期间通过增加盐浓度诱导出类似强直样的收缩。当Ca++浓度降低时,强直样力迅速下降。结果表明,在高离子强度下,ABRM中横桥从肌动蛋白丝上的脱离受Ca++调节。