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幽灵蟹(Ocypode cursor)正常肌肉和经甘油处理的肌肉的超微结构

The ultrastructure of normal and glycerol treated muscle in the ghost crab, Ocypode cursor.

作者信息

Castel M, Papir D

出版信息

Cell Tissue Res. 1975 Jun 13;159(3):369-78. doi: 10.1007/BF00221783.

Abstract

The ultrastructure of normal and glycerol treated fibers of the closer muscle of the ghost crab, Ocypode cursor, was studiedmthe muscle is composed of presumably phasic (short sarcomeres) and tonic (long sarcomeres) fibers, the latter greatly predominating. Horseradish peroxidase (HRP) was used as an extracellular tracer to delineate the tubular system (TS), and to determine to what extent this system becomes detached from the extracellular space as a result of glycerol treatment. Sarcolemmal clefts invade deeply into the muscle at Z-lines and I-bands; tubules invaginate into the muscle from the clefts and from the surface sarcolemma at the Z-lines, A-I overlaps and A-bands. A tubules are in frequent diadic or tetradic contact with the sarcoplasmic reticulum (SR), whereas Z tubules appear to be randomly associated with SR, terminal cisterns (TC) and Z-line fibrils. When HRP was administered to normal muscle, black reaction product was found adjacent to the outer surface of the sarcolemma, within the clefts and within profiles of the TS throughout the tissue. In glycerol treated muscle peripheral vacuolation frequently occurred; black reaction product penetrated only as far as the vacuoles and into dilated Z-line tubules, but was virtually absent from the rest of the TS. This lack of continuity between the extracellular space and the A tubules indicated disruption or constriction of the A tubules as a result of glycerol treatment, although Z tubule contact with the extracellular space appeared unimpaired. These findings provide ultrastructural correlates of the electrophysiological changes produced by glycerol treatment of the closer muscle of the ghost crab (Papir, 1973), namely, interference with excitation-contraction (e-c) coupling. The random association of the Z tubules with SR and TC, and their resistance to disruption by glycerol treatment, tend to endorse the claims that the Z tubules in crustacean muscle are not directly involved in e-c coupling (Brandt et al., 1965; Peachey, 1967; Selverston, 1967).

摘要

研究了幽灵蟹(Ocypode cursor)闭肌正常纤维和经甘油处理的纤维的超微结构。该肌肉由推测为相性(短肌节)和紧张性(长肌节)纤维组成,后者占主导地位。辣根过氧化物酶(HRP)用作细胞外示踪剂来描绘管状系统(TS),并确定该系统因甘油处理而与细胞外空间分离的程度。肌膜裂隙在Z线和I带处深深侵入肌肉;小管从裂隙以及Z线、A-I重叠处和A带处的表面肌膜内陷进入肌肉。A小管经常与肌浆网(SR)形成二联体或四联体接触,而Z小管似乎与SR、终末池(TC)和Z线纤维随机相关。当将HRP施用于正常肌肉时,在整个组织的肌膜外表面、裂隙内和TS轮廓内发现黑色反应产物。在经甘油处理的肌肉中,经常出现外周空泡化;黑色反应产物仅渗透到空泡和扩张的Z线小管中,但在TS的其余部分几乎不存在。细胞外空间与A小管之间缺乏连续性表明甘油处理导致A小管中断或收缩,尽管Z小管与细胞外空间的接触似乎未受影响。这些发现为甘油处理幽灵蟹闭肌所产生的电生理变化提供了超微结构相关性(Papir,1973),即对兴奋-收缩(e-c)偶联的干扰。Z小管与SR和TC的随机关联以及它们对甘油处理的抗破坏能力,倾向于支持甲壳类肌肉中的Z小管不直接参与e-c偶联的说法(Brandt等人,1965;Peachey,1967;Selverston,1967)。

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