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鞘脂富集膜结构域研究的新方法:利用电子显微镜放射自显影术揭示细胞培养物中代谢标记的氚化鞘脂。

New approaches to the study of sphingolipid enriched membrane domains: the use of electron microscopic autoradiography to reveal metabolically tritium labeled sphingolipids in cell cultures.

作者信息

Dolo V, D'Ascenzo S, Sorice M, Pavan A, Sciannamblo M, Prinetti A, Chigorno V, Tettamanti G, Sonnino S

机构信息

Department of Experimental Medicine, University of L'Aquila, Italy.

出版信息

Glycoconj J. 2000 Mar-Apr;17(3 -4):261-8. doi: 10.1023/a:1026505710607.

DOI:10.1023/a:1026505710607
PMID:11201799
Abstract

This paper is the first report on the use of the electron microscopy autoradiography technique to detect metabolically tritium labeled sphingolipids in intact cells in culture. To label cell sphingolipids, human fibroblasts in culture were fed by a 24 hours pulse, repeated 5 times, of 3 x 10(-7) M [1-(3)H]sphingosine. [1-(3)H]sphingosine was efficently taken up by the cells and very rapidly used for the biosynthesis of complex sphingolipids, including neutral glycolipids, gangliosides, ceramide and sphingomyelin. The treatment with [1-(3)H]sphingosine did not induce any morphological alteration of cell structures, and well preserved cells, plasma membranes, and intracellular organelles could be observed by microscopy. Ultrathin sections from metabolic radiolabeled cells were coated with autoradiographic emulsion. One to four weeks of exposition resulted in pictures where the location of radioactive sphingolipids was evidenced by the characteristic appearance of silver grains as irregular coiled ribbons of metallic silver. Radioactive sphingolipids were found at the level of the plasma membranes, on the endoplasmic reticulum and inside of cytoplasmic vesicles. Thus, electron microscopy autoradiography is a very useful technique to study sphingolipid-enriched membrane domain organization and biosynthesis.

摘要

本文首次报道了运用电子显微镜放射自显影技术检测培养的完整细胞中经代谢标记的氚化鞘脂类。为标记细胞鞘脂类,对培养的人成纤维细胞进行5次重复的24小时脉冲喂养,所用的是3×10⁻⁷M的[1-(³)H]鞘氨醇。[1-(³)H]鞘氨醇能被细胞有效摄取,并很快用于包括中性糖脂、神经节苷脂、神经酰胺和鞘磷脂在内的复合鞘脂类的生物合成。用[1-(³)H]鞘氨醇处理未引起细胞结构的任何形态学改变,通过显微镜可观察到保存良好的细胞、质膜和细胞内细胞器。对经代谢放射性标记的细胞制作超薄切片,并用放射自显影乳剂包被。曝光1至4周后得到的图像中,放射性鞘脂类的位置可通过金属银不规则盘绕带的银颗粒特征外观得以证实。在质膜水平、内质网以及细胞质囊泡内部均发现有放射性鞘脂类。因此,电子显微镜放射自显影术是研究富含鞘脂类的膜结构域组织和生物合成的一项非常有用的技术。

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New approaches to the study of sphingolipid enriched membrane domains: the use of electron microscopic autoradiography to reveal metabolically tritium labeled sphingolipids in cell cultures.鞘脂富集膜结构域研究的新方法:利用电子显微镜放射自显影术揭示细胞培养物中代谢标记的氚化鞘脂。
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Glycoconj J. 2006 May;23(3-4):159-65. doi: 10.1007/s10719-006-7921-7.

本文引用的文献

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Protein measurement with the Folin phenol reagent.使用福林酚试剂进行蛋白质测定。
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Sphingolipid-enriched membrane domains from rat cerebellar granule cells differentiated in culture. A compositional study.来自培养中分化的大鼠小脑颗粒细胞的富含鞘脂的膜结构域。一项成分研究。
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Caveolin interacts with Trk A and p75(NTR) and regulates neurotrophin signaling pathways.小窝蛋白与酪氨酸激酶受体A(Trk A)和p75神经营养因子受体(p75(NTR))相互作用,并调节神经营养因子信号通路。
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New insights in glycosphingolipid function: "glycosignaling domain," a cell surface assembly of glycosphingolipids with signal transducer molecules,involved in cell adhesion coupled with signaling.鞘糖脂功能的新见解:“糖信号域”,一种鞘糖脂与信号转导分子在细胞表面的组装体,参与细胞黏附并伴有信号传导。
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