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Osmotic Properties of the Sealed Tubular System of Toad and Rat Skeletal Muscle

机译:蟾蜍和大鼠骨骼肌密封管系统的渗透特性

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A method was developed that allows conversion of changes in maximum Ca~(2+)-dependent fluorescence of a fixed amount of fluo-3 into volume changes of the fluo-3–containing solution. This method was then applied to investigate by confocal microscopy the osmotic properties of the sealed tubular (t-) system of toad and rat mechanically skinned fibers in which a certain amount of fluo-3 was trapped. When the osmolality of the myoplasmic environment was altered by simple dilution or addition of sucrose within the range 190–638 mosmol kg~(-1), the sealed t-system of toad fibers behaved almost like an ideal osmometer, changing its volume inverse proportionally to osmolality. However, increasing the osmolality above 638 to 2,550 mosmol kg~(-1) caused hardly any change in t-system volume. In myoplasmic solutions made hypotonic to 128 mosmol kg~(-1), a loss of Ca~(2+) from the sealed t-system of toad fibers occurred, presumably through either stretch-activated cationic channels or store-operated Ca~(2+) channels. In contrast to the behavior of the t-system in toad fibers, the volume of the sealed t-system of rat fibers changed little (by <20%) when the osmolality of the myoplasmic environment changed between 210 and 2,800 mosmol kg~(-1). Results were also validated with calcein. Clear differences between rat and toad fibers were also found with respect to the t-system permeability for glycerol. Thus, glycerol equilibrated across the rat t-system within seconds to minutes, but was not equilibrated across the t-system of toad fibers even after 20 min. These results have broad implications for understanding osmotic properties of the t-system and reversible vacuolation in muscle fibers. Furthermore, we observed for the first time in mammalian fibers an orderly lateral shift of the t-system networks whereby t-tubule networks to the left of the Z-line crossover to become t-tubule networks to the right of the Z-line in the adjacent sarcomere (and vice versa). This orderly rearrangement can provide a pathway for longitudinal continuity of the t-system along the fiber axis.
机译:开发了一种方法,可以将固定量的fluo-3的最大Ca〜(2+)依赖性荧光变化转换为含fluo-3的溶液的体积变化。然后将该方法用于通过共聚焦显微镜研究蟾蜍和大鼠机械表皮纤维的密封管状(t-)系统的渗透性能,在该系统中捕获了一定量的fluo-3。当通过简单稀释或添加190-638 mosmol kg〜(-1)范围内的蔗糖改变肌质环境的重量克分子渗透压浓度时,蟾蜍纤维的密封t系统的行为几乎类似于理想的渗透压计,其体积成反比渗透压。然而,将渗透压升高至638以上至2,550 mosmol kg〜(-1)几乎不会引起t系统体积的任何变化。在低渗至128 mosmol kg〜(-1)的肌浆溶液中,蟾蜍纤维的密封t-系统发生Ca〜(2+)的损失,大概是通过拉伸激活的阳离子通道或贮存操作的Ca〜( 2+)个频道。与蟾蜍纤维中t系统的行为相反,当肌质环境的重量摩尔渗透压浓度在210至2,800 mosmol kg〜(-)之间变化时,大鼠纤维的密封t系统的体积变化很小(<20%)。 1)。钙黄绿素也验证了结果。在甘油对t系统的渗透性方面,还发现了大鼠和蟾蜍纤维之间的明显差异。因此,甘油在数秒至数分钟内在大鼠的t系统中达到平衡,但即使在20分钟后,在蟾蜍纤维的t系统中也未达到平衡。这些结果对于理解t系统的渗透特性和肌肉纤维中的可逆空泡具有广泛的意义。此外,我们首次在哺乳动物纤维中观察到t系统网络的有序侧向移动,从而t形管网络在Z线的左侧交叉,成为t形管在z线的右侧。相邻的肌节(反之亦然)。这种有序的重排可以为t系统沿纤维轴的纵向连续性提供一条路径。

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