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在可收缩的纤毛虫钟虫中连接肌原纤维、内质网和表面膜的结构。

Structures linking the myonemes, endoplasmic reticulum, and surface membranes in the contractile ciliate Vorticella.

作者信息

Allen R D

出版信息

J Cell Biol. 1973 Feb;56(2):559-79. doi: 10.1083/jcb.56.2.559.

Abstract

An electron microscope investigation of the interface between the myonemes of Vorticella convallaria and their associated endoplasmic reticulum (ER) has revealed structures of a complex morphology linking these two organelles. These structures are named "linkage complexes". Each complex contains a spindle-shaped midpiece which lies in a groove of the ER membrane. Microfilaments splay out from the tips of the midpiece and may come in contact with the inner alveolar sac membrane. Three to six raillike structures lie on each side of the midpiece and parallel it. The ER membrane appears to pass through the sides of the rails. In the lumen of the ER these rails are associated with a meshwork of filaments. A cradle of five rods lies within the groove under the midpiece. The ER membrane also passes through these rods which contact the same meshwork. In the scopular region and in the stalk the microfilaments from the midpiece form a bundle which passes into the lumen of modified basal bodies. These basal bodies are connected to the alveolar sac which, in the stalk, passes as a flattened tube along its length. The parts of the dissociated linkage complex are scattered throughout the spasmoneme of the stalk along membranes of the intraspasmonemal tubules. Thus, both stalk and body contractile bundles have linkage complexes that link their associated membrane systems to the microfibrils and, in turn, connect this membrane-microfibrillar interface to the pellicular membranes. The arrangement of the linkage complex suggests an involvement in the control of the transport of calcium ions between ER and microfibrils, and possibly the transfer of a message from the surface membranes to the sites of calcium release to trigger myonemal contraction.

摘要

对钟形钟虫肌丝与其相关内质网(ER)之间界面的电子显微镜研究揭示了连接这两种细胞器的复杂形态结构。这些结构被命名为“连接复合体”。每个复合体包含一个纺锤形的中间部分,位于内质网膜的凹槽中。微丝从中间部分的末端伸展出来,可能与内泡囊膜接触。在中间部分的每一侧有三到六个铁轨状结构并与之平行。内质网膜似乎穿过铁轨的两侧。在内质网腔中,这些铁轨与丝状网络相关联。在中间部分下方的凹槽内有一个由五根杆组成的支架。内质网膜也穿过这些与同一网络接触的杆。在帚胚区域和柄中,来自中间部分的微丝形成一束,进入经过修饰的基体腔。这些基体与泡囊相连,在柄中,泡囊作为扁平管沿其长度延伸。解离的连接复合体的各个部分沿着肌内小管的膜散布在柄的肌丝中。因此,柄和体收缩束都有连接复合体,将它们相关的膜系统与微原纤维连接起来,进而将这种膜 - 微原纤维界面与表膜连接起来。连接复合体的排列表明其参与了内质网和微原纤维之间钙离子运输的控制,并且可能参与了从表面膜到钙离子释放位点的信息传递以触发肌丝收缩。

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本文引用的文献

1
The sarcoplasmic reticulum of the bat cricothroid muscle.蝙蝠环甲肌的肌浆网。
J Cell Biol. 1962 Mar;12(3):571-88. doi: 10.1083/jcb.12.3.571.
4
The fine structure of an elementary contractile system.基本收缩系统的精细结构。
J Biophys Biochem Cytol. 1959 Aug;6(1):126-8. doi: 10.1083/jcb.6.1.126.
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[The mechanism of a new contraction cycle differing from muscle contraction].
Biochim Biophys Acta. 1958 Feb;27(2):247-55. doi: 10.1016/0006-3002(58)90331-7.
8
The sarcoplasmic reticulum in muscle cells of Amblystoma larvae.美西螈幼虫肌肉细胞中的肌浆网。
J Biophys Biochem Cytol. 1956 Jul 25;2(4 Suppl):163-70. doi: 10.1083/jcb.2.4.163.

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