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凝集素标记的膜在体内被转运至小鼠垂体细胞的高尔基体复合体。

Lectin-labeled membrane is transferred to the Golgi complex in mouse pituitary cells in vivo.

作者信息

Balin B J, Broadwell R D

出版信息

J Histochem Cytochem. 1987 Apr;35(4):489-98. doi: 10.1177/35.4.2434560.

Abstract

Labeling of the Golgi complex with the lectin conjugate wheat germ agglutinin-horseradish peroxidase (WGA-HRP), which binds to cell surface membrane and enters cells by adsorptive endocytosis, was analyzed in secretory cells of the anterior, intermediate, and posterior lobes of mouse pituitary gland in vivo. WGA-HRP was administered intravenously or by ventriculo-cisternal perfusion to control and salt-stressed mice; post-injection survival times were 30 min-24 hr. Peroxidase reaction product was identified within the extracellular clefts of anterior and posterior pituitary lobes through 24 hr but was absent in intermediate lobe. Endocytic vesicles, spherical endosomes, tubules, dense and multivesicular bodies, the trans-most saccule of the Golgi complex, and dense-core secretory granules attached or unattached to the trans Golgi saccule were peroxidase-positive in the different types of anterior pituitary cells and in perikarya of supraoptico-neurohypophyseal neurons; endoplasmic reticulum and the cis and intermediate Golgi saccules in the same cell types were consistently devoid of peroxidase reaction product. Dense-core secretory granules derived from cis and intermediate Golgi saccules in salt-stressed supraoptic perikarya likewise failed to exhibit peroxidase reaction product. The results suggest that in secretory cells of anterior and posterior pituitary lobes, WGA-HRP, initially internalized with cell surface membrane, is eventually conveyed to the trans-most Golgi saccule, in which the lectin conjugate and associated membrane are packaged in dense-core secretory granules for export and potential exocytosis of the tracer. Endoplasmic reticulum and the cis and intermediate Golgi saccules appear not to be involved in the endocytic/exocytic pathways of pituitary cells exposed to WGA-HRP.

摘要

用凝集素偶联物麦胚凝集素 - 辣根过氧化物酶(WGA - HRP)对高尔基体进行标记,该凝集素与细胞表面膜结合并通过吸附性胞吞作用进入细胞,对体内小鼠垂体前叶、中叶和后叶的分泌细胞进行了分析。将WGA - HRP静脉注射或通过脑室 - 脑池灌注给予对照小鼠和盐胁迫小鼠;注射后的存活时间为30分钟至24小时。在垂体前叶和后叶的细胞外间隙中,过氧化物酶反应产物在24小时内均可检测到,但在中叶中不存在。在不同类型的垂体前叶细胞以及视上 - 神经垂体神经元的胞体中,内吞小泡、球形内体、小管、致密和多囊泡体、高尔基体最外侧的囊泡以及附着或未附着于高尔基体外侧囊泡的致密核心分泌颗粒均呈过氧化物酶阳性;相同细胞类型中的内质网以及高尔基体的顺面和中间囊泡始终没有过氧化物酶反应产物。盐胁迫的视上核胞体中源自高尔基体顺面和中间囊泡的致密核心分泌颗粒同样未表现出过氧化物酶反应产物。结果表明,在垂体前叶和后叶的分泌细胞中,最初与细胞表面膜一起内化的WGA - HRP最终被转运至高尔基体最外侧的囊泡,在其中凝集素偶联物和相关膜被包装在致密核心分泌颗粒中,用于示踪剂的输出和潜在的胞吐作用。内质网以及高尔基体的顺面和中间囊泡似乎不参与暴露于WGA - HRP的垂体细胞的内吞/胞吐途径。

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