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多小核草履虫的高尔基体复合物、吞噬体和溶酶体对小麦胚凝集素的细胞内结合

Intracellular binding of wheat germ agglutinin by Golgi complexes, phagosomes, and lysosomes of Paramecium multimicronucleatum.

作者信息

Allen R D, Schroeder C C, Fok A K

机构信息

Pacific Biomedical Research Center, University of Hawaii, Honolulu 96822.

出版信息

J Histochem Cytochem. 1989 Feb;37(2):195-202. doi: 10.1177/37.2.2911005.

Abstract

The compartments of the Paramecium digestive system were investigated with wheat germ agglutinin (WGA). By use of cryosectioning or Lowicryl K4M embedding combined with pulse-chase studies and WGA-gold labeling, WGA binding sites were located on membranes of the phagosome-lysosome system, including all four stages of digestive vacuoles, the discoidal vesicles, acidosomes, and lysosomes. In addition, the contents of lysosomes, cisternae at the trans face of Golgi stacks, and coated and uncoated blebs and vesicles at the putative trans Golgi network bind to WGA. Crystal-containing vacuoles characteristic of mid-log to stationary-phase cultures are enclosed by heavily labeled membranes. Alveoli underlying the plasma membrane sometimes contain binding sites, particularly on their outer membranes. Ciliary membranes previously shown to be labeled with WGA-FITC are negative in frozen thin and Lowicryl K4M sections. The presence of WGA binding sites on the trans face of the Golgi stack is the first indication in ciliated protozoa, such as Paramecium, of probable Golgi complex involvement in glycosylation similar to that in higher organisms. WGA-labeled coated vesicles in the endoplasm apparently lose their coats and coalesce to form lysosomes. Our study shows that WGA can be used as a specific intracellular marker of all digestive system membranes and of lysosomal content. These results support and extend our published scheme of membrane flow and recycling in Paramecium by providing another means of demonstrating membrane relationships.

摘要

利用小麦胚凝集素(WGA)对草履虫消化系统的区室进行了研究。通过使用冷冻切片或Lowicryl K4M包埋结合脉冲追踪研究以及WGA金标法,WGA结合位点定位于吞噬体 - 溶酶体系统的膜上,包括消化泡的所有四个阶段、盘状小泡、酸小体和溶酶体。此外,溶酶体的内容物、高尔基体堆叠反面的潴泡以及假定的反式高尔基体网络处的有被和无被小泡与WGA结合。对数中期到稳定期培养物特有的含晶体液泡被标记强烈的膜所包围。质膜下方的小泡有时含有结合位点,特别是在它们的外膜上。先前显示用WGA - FITC标记的纤毛膜在冷冻薄片和Lowicryl K4M切片中呈阴性。高尔基体堆叠反面存在WGA结合位点是纤毛虫类如草履虫中可能的高尔基体复合体参与类似于高等生物的糖基化的首个迹象。内质中WGA标记的有被小泡显然失去其衣被并融合形成溶酶体。我们的研究表明,WGA可作为所有消化系统膜和溶酶体内容物的特异性细胞内标记物。这些结果通过提供另一种证明膜关系的方法,支持并扩展了我们已发表的草履虫膜流和再循环方案。

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