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细胞外张力对两栖类骨骼肌三联体复合体结构的影响。

The effect of extracellular tonicity on the anatomy of triad complexes in amphibian skeletal muscle.

作者信息

Martin Claire A, Petousi Nayia, Chawla Sangeeta, Hockaday Austin R, Burgess Antony J, Fraser James A, Huang Christopher L H, Skepper Jeremy N

机构信息

Physiological Laboratory, University of Cambridge, Downing Street, Cambridge CB2 3EG, United Kingdom.

出版信息

J Muscle Res Cell Motil. 2003;24(7):407-15. doi: 10.1023/a:1027356410698.

Abstract

Ultrastructural features of tubular-sarcoplasmic (T-SR) triad junctions and measures of cell volume following graded increases of extracellular tonicity were compared under physiological conditions recently shown to produce spontaneous release of intracellularly stored Ca2+ in fully polarized amphibian skeletal muscle fibres. The fibres were fixed using solutions of equivalent tonicities prior to processing for electron microscopy. The resulting anatomical sections demonstrated a partially reversible cell shrinkage corresponding to substantial increases in intracellular solute or ionic strength graded with extracellular tonicity. Serial thin sections through triad structures confirmed the presence of geometrically close but anatomically isolated transverse (T-) tubular and sarcoplasmic reticular (SR) membranes contrary to earlier suggestions for the development of luminal continuities between these structures in hypertonic solutions. They also quantitatively demonstrated accompanying decreases in T-SR distances, increased numbers of sections that showed closely apposed T and SR membranes, tubular luminal swelling and reductions in luminal volume of the junctional SR, all correlated with the imposed increases in extracellular osmolarity. Fully polarized fibres correspondingly showed elementary Ca(2+)-release events ('sparks', in 100 mM-sucrose-Ringer solution), sustained Ca2+ elevations and propagated Ca2+ waves (> or = 350-500 mM sucrose) following exposure to physiological Ringer solutions of successively greater tonicities. These were absent in hypotonic, isotonic or less strongly hypertonic (approximately 50 mM sucrose-Ringer) solutions. Yet exposure to hypotonic solutions also disrupted T-SR junctional anatomy. It increased the tubular diameters and T-SR distances and reduced their area of potential contact. The spontaneous release of intracellularly stored Ca2+ thus appears more closely to correlate with the expected changes in intracellular solute strength or a reduction in absolute T-SR distance rather than disruption of an optimal anatomical relationship between T and SR membranes taking place with either increases or decreases in extracellular tonicity.

摘要

在最近发现的生理条件下,完全极化的两栖类骨骼肌纤维会自发释放细胞内储存的Ca2+,在此条件下,比较了管状肌浆网(T-SR)三联体连接的超微结构特征以及细胞外张力分级增加后的细胞体积测量值。在进行电子显微镜处理之前,使用等渗溶液固定纤维。所得的解剖切片显示,细胞出现部分可逆性收缩,这与细胞内溶质或离子强度随细胞外张力分级大幅增加相对应。通过三联体结构的连续薄切片证实,横向(T-)小管和肌浆网(SR)膜在几何上紧密相邻,但在解剖学上相互隔离,这与早期关于在高渗溶液中这些结构之间形成管腔连续性的观点相反。它们还定量显示了T-SR距离随之缩短、显示紧密相邻的T和SR膜的切片数量增加、小管腔肿胀以及连接SR的管腔体积减小,所有这些都与细胞外渗透压的增加相关。完全极化的纤维在暴露于渗透压依次增加的生理林格溶液后,相应地显示出基本的Ca(2+)释放事件(在100 mM蔗糖 - 林格溶液中为“火花”)、持续的Ca2+升高和传播的Ca2+波(≥350 - 500 mM蔗糖)。在低渗、等渗或较弱高渗(约50 mM蔗糖 - 林格)溶液中则不存在这些现象。然而,暴露于低渗溶液也会破坏T-SR连接的解剖结构。它会增加小管直径和T-SR距离,并减少它们的潜在接触面积。因此,细胞内储存的Ca2+的自发释放似乎更紧密地与细胞内溶质强度的预期变化或绝对T-SR距离的减小相关,而不是与细胞外张力增加或降低时T和SR膜之间最佳解剖关系的破坏相关。

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