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耳状海兔纵体壁肌肉的超微结构与生理学研究。I. 力学响应与超微结构

Ultrastructural and physiological studies on the longitudinal body wall muscle of Dolabella auricularia. I. Mechanical response and ultrastructure.

作者信息

Sugi H, Suzuki S

出版信息

J Cell Biol. 1978 Nov;79(2 Pt 1):454-66. doi: 10.1083/jcb.79.2.454.

Abstract

The physiological properties of mechanical response and the ultrastructure in the longitudinal body wall muscle (LBWM) of the opisthobranch mollusc Dolabella auricularia were studied to obtain information about excitation-contraction coupling in somatic smooth muscles responsible for smooth and slow body movement of molluscans. The contracture tension produced by 400 mM K was not affected by Mn ions (5--10 mM) and low pH (up to 4.0), but was reduced by procaine (2 mM). The K-contracture tension was not readily eliminated in a Ca-free solution containing ethylene glycol-bis(beta-aminoethyl ether)N,N,N',N'-tetraacetate (EGTA). A large contracture tension was also produced by rapid cooling of the surrounding fluid from 20 degrees to 5 degrees--3 degrees C even when the preparation showed no mechanical response to 400 mM K after prolonged (more than 2 h) soaking in the Ca-free solution. These results indicate that the LBWM fibers contain a large amount of intracellularly stored Ca which can be effectively released by membrane depolarization. The fibers were connected with each other, forming the gap junctions, the desmosomes, and the intermediate junctions. The sarcoplasmic reticulum (SR) consisted of vesicular and tubular elements, and was mostly located near the fiber surface. The plasma membrane showed marked tubular invaginations of 600-800 A in diameter, with many branches (surface tubules), extending inwards for approximately 2 micron. These surface tubules were closely apposed to the SR, and the bridgelike structures analogous to those in the triadic junction of vertebrate skeletal muscle were observed in the space between the surface tubules and the SR. It is suggested that the influence of membrane depolarization is transmitted inwards along the surface tubules to cause the release of Ca from the SR.

摘要

为了获取有关负责软体动物平滑且缓慢身体运动的体壁平滑肌兴奋 - 收缩偶联的信息,对后鳃亚纲软体动物耳状船蛸纵向体壁肌肉(LBWM)的机械反应生理特性和超微结构进行了研究。由400 mM钾产生的挛缩张力不受锰离子(5 - 10 mM)和低pH(至4.0)的影响,但会被普鲁卡因(2 mM)降低。在含有乙二醇双(β - 氨基乙基醚)N,N,N',N' - 四乙酸(EGTA)的无钙溶液中,钾诱导的挛缩张力不易消除。即使在无钙溶液中长时间(超过2小时)浸泡后,制剂对400 mM钾无机械反应,当将周围液体从20℃快速冷却至5℃ - 3℃时,也会产生较大的挛缩张力。这些结果表明,LBWM纤维含有大量细胞内储存的钙,其可通过膜去极化有效释放。纤维相互连接,形成缝隙连接、桥粒和中间连接。肌浆网(SR)由囊泡状和管状成分组成,主要位于纤维表面附近。质膜显示出直径为600 - 800 Å的明显管状内陷,有许多分支(表面小管),向内延伸约2微米。这些表面小管与SR紧密相邻,并且在表面小管和SR之间的空间中观察到类似于脊椎动物骨骼肌三联体连接处的桥状结构。有人提出,膜去极化的影响沿着表面小管向内传递,导致钙从SR释放。

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