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成年小鼠小脑中小麦胚凝集素结合位点:光镜和电镜研究

Wheat germ agglutinin binding sites in the adult mouse cerebellum: light and electron microscopic studies.

作者信息

Steindler D A, Cooper N G

出版信息

J Comp Neurol. 1986 Jul 8;249(2):170-85. doi: 10.1002/cne.902490205.

Abstract

The binding properties of derivatized wheat germ agglutinin (WGA) have been examined in fixed tissue sections from the adult mouse cerebellum and also in axonal tracing paradigms following cerebellar injections. The aim of these studies is to begin to distinguish the roles different binding sites may play in generating diverse biological activities which lead to neuronal uptake and axonal transport of lectins or glycoconjugates. Vibratome sections from aldehyde-fixed cerebellum were incubated in N-[acetyl-3H] WGA or WGA conjugated to horseradish peroxidase (WGA-HRP). Sections from this in vitro binding paradigm and those from cerebellar pressure injection cases using those tracers (in vivo binding paradigm) were processed for light microscopic autoradiography, histochemistry, and electron microscopy. Blocking experiments were also performed with various sugar haptens to confirm the binding specificity of these lectin preparations. Light microscopy of lectin binding patterns within the cerebellar cortex has revealed that both derivatized WGA preparations bind most intensely to the molecular layer. Within the deep cerebellar nuclei, binding is unique and produces a punctate delineation of cell bodies and dendrites. Electron microscopy revealed that these binding sites are associated with glial processes which abut the plasma membrane of deep nuclei cells. Cerebellar WGA-HRP injection sites contain labeled profiles involved in uptake and axonal transport of the labeled lectin (e.g., multivesicular and dense bodies) in addition to label associated with synapses, glia, undetermined components of the extracellular space, and neuronal plasma membranes. These sites are therefore presumed to possess a high affinity or capacity for binding derivatized WGA. Binding studies performed here thus reveal, for the first time, the existence of discrete glial sites that display an extraordinary attraction for lectins such as WGA. The roles such glial glycoconjugates play in diverse biological activities including neuronal uptake and transport of macromolecules need further study.

摘要

已在成年小鼠小脑的固定组织切片中以及小脑注射后的轴突示踪实验中研究了衍生化小麦胚凝集素(WGA)的结合特性。这些研究的目的是开始区分不同结合位点在产生导致凝集素或糖缀合物的神经元摄取和轴突运输的多种生物活性中可能发挥的作用。将醛固定小脑的振动切片在N-[乙酰基-³H]WGA或与辣根过氧化物酶偶联的WGA(WGA-HRP)中孵育。对来自这种体外结合实验的切片以及使用这些示踪剂的小脑压力注射病例的切片(体内结合实验)进行光学显微镜放射自显影、组织化学和电子显微镜检查。还使用各种糖半抗原进行了阻断实验,以确认这些凝集素制剂的结合特异性。小脑皮质内凝集素结合模式的光学显微镜检查显示,两种衍生化WGA制剂都与分子层结合最强烈。在小脑深部核团内,结合是独特的,并产生细胞体和树突的点状轮廓。电子显微镜显示,这些结合位点与紧靠深部核团细胞质膜的神经胶质突起相关。小脑WGA-HRP注射部位除了含有与突触、神经胶质、细胞外空间未确定成分和神经元质膜相关的标记外,还含有参与标记凝集素摄取和轴突运输的标记结构(如多囊泡体和致密体)。因此,推测这些位点对衍生化WGA具有高亲和力或结合能力。此处进行的结合研究首次揭示了存在对诸如WGA等凝集素表现出非凡吸引力的离散神经胶质位点。这种神经胶质糖缀合物在包括神经元摄取和大分子运输在内的多种生物活性中所起的作用需要进一步研究。

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