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大鼠甲状旁腺细胞中储存颗粒的生物学意义。

The biological significance of storage granules in rat parathyroid cells.

作者信息

Setoguti T, Inoue Y, Wild P

机构信息

Department of Anatomy, Nagasaki University School of Medicine, Japan.

出版信息

Microsc Res Tech. 1995 Oct 1;32(2):148-63. doi: 10.1002/jemt.1070320209.

Abstract

Both prosecretory and storage granules are concomitantly formed at the trans Golgi network including the innermost Golgi cisterna. Prosecretory granules develop into small secretory granules that release their contents by exocytosis finely regulated by a complex mechanism for maintaining calcium homeostasis. In the rat parathyroid cells, storage granules are large secretory granules storing parathyroid hormone for an emergency supply. The hormone is rapidly discharged by exocytosis when serum calcium concentration is decreased. The granules are constantly produced even under conditions of low serum calcium concentration in the regions of 8 mg/dl. The granule content is constantly hydrolyzed when not discharged, leading to a decreased core and finally to the formation of vacuolar bodies. The fate of the vacuolar bodies is unknown. Hypercalcemic conditions accelerate hydrolysis. The threshold value of calcium concentration required for the release of storage granule contents is between 8.0 and 7.5 mg/dl and that of calcium concentration for accelerating degradation of storage granules is about 11.5 mg/dl. Sympathetic stimulation causes storage granules to be discharged regardless of hypercalcemia or hypocalcemia. Parasympathetic stimulation accelerates hydrolysis. The degradation of storage granules seems to be closely associated with an intracellular regulatory mechanism for parathyroid hormone secretion.

摘要

促分泌颗粒和储存颗粒在包括最内层高尔基体池的反式高尔基体网络中同时形成。促分泌颗粒发育成小分泌颗粒,其通过由维持钙稳态的复杂机制精细调节的胞吐作用释放其内容物。在大鼠甲状旁腺细胞中,储存颗粒是储存甲状旁腺激素以供紧急供应的大分泌颗粒。当血清钙浓度降低时,该激素通过胞吐作用迅速释放。即使在血清钙浓度低至8mg/dl的情况下,颗粒也会持续产生。当不释放时,颗粒内容物会不断水解,导致核心缩小,最终形成空泡体。空泡体的命运尚不清楚。高钙血症状态会加速水解。储存颗粒内容物释放所需的钙浓度阈值在8.0至7.5mg/dl之间,加速储存颗粒降解的钙浓度阈值约为11.5mg/dl。交感神经刺激会导致储存颗粒释放,无论血钙过高还是过低。副交感神经刺激会加速水解。储存颗粒的降解似乎与甲状旁腺激素分泌的细胞内调节机制密切相关。

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