首页> 外文期刊>The Journal of Physiology >The accessibility and interconnectivity of the tubular system network in toad skeletal muscle.
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The accessibility and interconnectivity of the tubular system network in toad skeletal muscle.

机译:蟾蜍骨骼肌中管状系统网络的可访问性和互连性。

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The tubular (t) system is essential for normal function of skeletal muscle fibre, acting as a conduit for molecules and ions within the cell. However, t system accessibility and interconnectivity have been mainly assessed in fixed cells where the t system no longer fully represents that of the living cell. Here, fluorescent dyes of different diameter were allowed to equilibrate within the t system of intact fibres from toad, mechanically skinned to trap the dyes, and then imaged using confocal microscopy to investigate t system accessibility and interconnectivity. Dual imaging of rhod-2 and a 500 kDa fluorescein dextran identified regions throughout the t system that differed in the accessibility to molecules of different molecular weight. Restrictions within the t system lumen occurred at the junctions of the longitudinal and transverse tubules and also where a transverse tubule split into two tubules to maintain their alignment with Z-lines of adjacent mis-registered sarcomeres. Thus, three types of tubule, transverse, longitudinal and Z, can be identified by their lumenal diameter in this network. The latter we define for the first time as a tubule with a narrow lumen that is responsible for the change in register. Stretch-induced t system vacuolation showed exclusive access of rhod-2 to these structures indicating their origin was the longitudinal tubules. Exposing the sealed t system to highly hypertonic solution reversed vacuolation of longitudinal tubules and also revealed that these tubules are not collapsible. Fluorescence recovery after photobleaching (FRAP) measurements of t system-trapped fluo-5 N showed interconnectivity through the t system along the axis of the fibre. However, diffusion occurred at a rate slower than expected given the known number of longitudinal tubules linking adjacent transverse tubules. This could be explained by the observed narrow opening to the longitudinal tubules from transverse tubules, reducing the effective cross-sectional area in which molecules could move within the t system.
机译:管状(t)系统对于骨骼肌纤维的正常功能至关重要,它充当细胞内分子和离子的导管。但是,t系统的可访问性和互连性主要是在固定系统中评估的,其中t系统不再完全代表活细胞。在这里,允许不同直径的荧光染料在来自蟾蜍的完整纤维的t系统中平衡,进行机械剥皮以捕获染料,然后使用共聚焦显微镜成像以研究t系统的可及性和互连性。 rhod-2和500 kDa荧光素葡聚糖的双重成像确定了整个t系统中不同分子量分子的可及性不同的区域。 t系统管腔内的限制发生在纵向和横向肾小管的交界处,也发生在横向肾小管分裂成两个肾小管以维持其与相邻错配肉瘤的Z线对齐的情况。因此,通过在该网络中的管腔直径可以识别出三种类型的小管,即横向,纵向和Z型。我们首次将后者定义为管腔狭窄的细管,该细管负责套准的变化。拉伸诱导的t系统空泡化显示rhod-2仅进入这些结构,表明它们的起源是纵向小管。将密封的t系统暴露于高渗溶液可逆转纵向小管的空泡化,并且还显示这些小管不可折叠。 t系统捕获的fluo-5 N的光漂白(FRAP)测量后的荧光恢复表明,沿着t轴沿着t轴的相互连接性。但是,已知连接相邻横向小管的纵向小管数量已知时,扩散发生的速度比预期的要慢。这可以通过观察到的从横向小管到纵向小管的狭窄开口来解释,这减小了分子可以在t系统内移动的有效横截面积。

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