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程序性细胞死亡。鳞翅目昆虫变态发育肌肉中的电生理与超微结构关联

Programmed cell death. electrophysiological and ultrastructural correlations in metamorphosing muscles of lepidopteran insects.

作者信息

Lockshin R A, Beaulaton J

出版信息

Tissue Cell. 1979;11(4):803-19. doi: 10.1016/0040-8166(79)90033-8.

DOI:10.1016/0040-8166(79)90033-8
PMID:524349
Abstract

Individual spontaneously degenerating fibers of moths have been examined successively by electrophysiological and ultrastructural techniques. The correlations observed by this method have revealed two phases of lysis. The first lytic phase begins at or before the ecdysis of the moth. It is characterized by a probable but occult respiratory lesion, normal movement of the ions across the plasma membrane, and limited degradation of myofilaments and autophagy of mitochondria. There are nevertheless early degenerative changes in the Z-band and a slight swelling of the T system. The second lytic phase is introduced, at approximately 15 hr after ecdysis, by collapse of the tracheal airways. The collapse of the tracheae is followed within 2 or 3 hr by a drastic reduction of input resistance, depolarization of the fiber, and loss of contractility. The rate of proteolysis increases, and the remaining myofilaments lose all structural identity by the twentieth hour. During this period of rapid change, the electron density of the reticular portion of the dyads decreases before a compactive process increases their opacity. Neural elements degenerate secondarily. The early lytic phases are apparently non-lysosomal for the myofilaments, although organelles such as mitochondria, ribosomes, and glycogen are destroyed in autophagic vacuoles. Elimination of oxygen and collapse of the resting potential, with the presumed equilibration of intracellular ionic content, provokes a rapid dissolution of the myofilament, with continued autophagic elimination of the organelles.

摘要

已通过电生理和超微结构技术对蛾类个体自发退化的纤维进行了连续检查。通过这种方法观察到的相关性揭示了溶解的两个阶段。第一个溶解阶段始于蛾类蜕皮时或蜕皮之前。其特征是可能存在但隐匿的呼吸损伤、离子跨质膜的正常移动、肌丝的有限降解以及线粒体的自噬。然而,Z带存在早期退化变化,T系统略有肿胀。第二个溶解阶段在蜕皮后约15小时开始,由气管气道塌陷引发。气管塌陷后2至3小时内,输入电阻急剧降低、纤维去极化以及收缩性丧失。蛋白水解速率增加,到第20小时时,剩余的肌丝失去所有结构特征。在这个快速变化的时期,二联体网状部分的电子密度在致密化过程增加其不透明度之前降低。神经成分继发退化。对于肌丝而言,早期溶解阶段显然是非溶酶体性的,尽管线粒体、核糖体和糖原等细胞器在自噬泡中被破坏。氧气的消除和静息电位的崩溃,以及细胞内离子含量的假定平衡,引发了肌丝的快速溶解,同时细胞器持续通过自噬被清除。

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