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微量分析揭示蜕皮小龙虾的钙转运机制

Calcium Transport Mechanism in Molting Crayfish Revealed by Microanalysis .

作者信息

Mizuhira Vinci, Ueno Masaki

机构信息

Department of Cell Biology, Medical Research Institute, Tokyo Medical and Dental University, Bunkyo-Ku, Tokyo 113, Japan.

出版信息

J Histochem Cytochem. 1983 Jan;31(1A_suppl):214-218. doi: 10.1177/31.1A_SUPPL.6131091.

Abstract

Crayfish provide a good model in which to study the transport mechanism of Ca ions. During the molting stage, decalcified Ca ions are transferred into the blood and accumulate in the gastrolith epithelium, after which a gastrolith is formed on the surface of the epithelium. The gastrolith is dissolved in the stomach after molting, and the Ca is reabsorbed and redistributed throughout the newly formed exoskeleton. We studied the mechanism of Ca transport by cytochemical precipitation of Ca ions and by electron microanalysis, including X-ray microanalysis (EDX) and electron energy-loss spectroscopy (EELS), with a computer. In EDX analysis, the fine precipitates of K-antimonate in the gastrolith mitochondria clearly defined Ca with antimony; we also observed a large amount of Ca-oxalate in the mitochondria, and Ca-K X-ray pulses were clearly defined. Ca-K X-rays were also detected from fresh freeze-substituted mitochondria. Finally, we succeeded in taking a Ca-L EELS image from the mitochondria of fresh freeze-substituted thin sections. Only a very small amount of Ca was detected from the cell membrane and other organelles. Ca-adenosine triphosphatase (ATPase) and Mg-ATPase activity was also very clearly demonstrated in the mitochondria. These enzymes may play an important role in Ca metabolism.

摘要

小龙虾为研究钙离子的转运机制提供了一个良好的模型。在蜕皮阶段,脱钙的钙离子被转移到血液中并积聚在胃石上皮中,之后在该上皮表面形成胃石。蜕皮后胃石在胃中溶解,钙被重新吸收并重新分布到新形成的外骨骼中。我们通过钙离子的细胞化学沉淀以及借助计算机进行的电子显微分析,包括X射线微分析(EDX)和电子能量损失谱(EELS),来研究钙的转运机制。在EDX分析中,胃石线粒体中锑酸钾的细微沉淀物用锑清晰地界定了钙;我们还在线粒体中观察到大量草酸钙,并且清晰地界定了钙 - 钾X射线脉冲。从新鲜冷冻替代的线粒体中也检测到了钙 - 钾X射线。最后,我们成功地从新鲜冷冻替代的薄切片的线粒体中获取了钙 - L EELS图像。仅从细胞膜和其他细胞器中检测到极少量的钙。在线粒体中也非常清晰地显示出钙 - 腺苷三磷酸酶(ATPase)和镁 - ATPase活性。这些酶可能在钙代谢中起重要作用。

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