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陆生等足类动物鼠妇(甲壳纲,潮虫亚目)胸骨上皮中碳酸钙沉积形成和吸收过程中的膜颗粒分布:冷冻蚀刻分析

Membrane particle distribution in the sternal epithelia of the terrestrial isopod Porcellio scaber latr. (Crustacea, oniscidea) during CaCO(3) deposit formation and resorption, a freeze-etch analysis.

作者信息

Ziegler A, Merz E

机构信息

Sektion Elektronenmikroskopie, Universität Ulm, Ulm, 89069, Germany.

出版信息

J Struct Biol. 1999 Oct;127(3):263-78. doi: 10.1006/jsbi.1999.4166.

Abstract

The anterior sternal epithelium of terrestrial isopods transports cuticular Ca(2+) to and from large sternal CaCO(3) deposits. We analyzed the anterior and posterior sternal epithelium by the means of the freeze-etch technique and measured the size distribution and density of intramembrane particles (IMPs) during three different molting stages. At least three IMP size classes around 4.5, 7.7, and 9.4 nm can be distinguished on the P-face of the apical and basolateral plasma membrane. An additional size class of around 12.8 nm is restricted to the apical compartment. In the anterior sternal epithelium, the density of these large particles changes by a factor of 1.9 during the molt cycle, suggesting a role in CaCO(3) formation and/or resorption. The density of the smaller IMPs rises transiently by a factor of 1.3 in the posterior sternal epithelium only. The IMP density of the basolateral plasma membrane increases significantly by a factor of 1.4 and 1.3 in the anterior and posterior sternal epithelia, respectively. The results indicate that increases in the IMP density contribute to the differentiation to an increased transport activity during the cyclic enlargements of the plasma membrane surface area in the anterior sternal epithelium.

摘要

陆生等足动物的胸骨前部上皮细胞负责将表皮中的钙离子输送到大型胸骨碳酸钙沉积物中,或从其中输送出来。我们采用冷冻蚀刻技术对胸骨前部和后部上皮细胞进行了分析,并测量了三个不同蜕皮阶段内膜颗粒(IMPs)的大小分布和密度。在顶端和基底外侧质膜的P面上,至少可以区分出三类大小约为4.5、7.7和9.4纳米的内膜颗粒。另一类大小约为12.8纳米的颗粒仅局限于顶端区室。在胸骨前部上皮细胞中,这些大颗粒的密度在蜕皮周期中变化了1.9倍,表明其在碳酸钙形成和/或再吸收过程中发挥作用。较小的内膜颗粒密度仅在胸骨后部上皮细胞中短暂上升了1.3倍。基底外侧质膜的内膜颗粒密度在胸骨前部和后部上皮细胞中分别显著增加了1.4倍和1.3倍。结果表明,内膜颗粒密度的增加有助于胸骨前部上皮细胞质膜表面积在周期性扩大过程中向增强的运输活性分化。

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