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伴刀豆球蛋白A对细胞间黏附的抑制作用与伴刀豆球蛋白A介导的表面受体重新分布有关。

Inhibition of intercellular adhesion by concanavalin A is associated with concanavalin A-mediated redistribution of surface receptors.

作者信息

Letourneau P C

出版信息

J Cell Biol. 1979 Jan;80(1):128-40. doi: 10.1083/jcb.80.1.128.

Abstract

The inhibition of adhesion between aggregates and layers of embryonic retinal cells by concanavalin A (Con A) and Con A-mediated rearrangements of Con A receptors on retinal cells were studied. A short incubation of aggregates and layers with 10 micrograms/ml Con A substantially reduced aggregate-to-layer adhesion in a subsequent assay without soluble lectin present. This effect of Con A was dose-dependent, temperature-sensitive, involved events subsequent to Con A binding, and was reduced by cytochalasin B. The inhibition produced by succinylated Con A was substantially increased by incubation with antibody to Con A. Visualization of ConA- receptor complexes by fluorescence microscopy revealed that binding of Con A induced clearing of Con A receptors from filopodia, flattened regions of growth cones, and the edges of axons. This clearing reaction was prevented by the same agents that reduced Con A's inhibition of cell adhesion: low temperature, succinylation of Con A, or cytochalasin B. Aggregate-layer adhesion was restored by releasing Con A at 37 degrees C. Inhibitors of protein and ATP synthesis did not prevent recovery of ability to make adhesions. However, release of Con A at lowered temperatures did not prevent recovery. The results suggest that intercellular adhesion is inhibited by events associated with redistribution of Con A-receptor complexes on retinal cells.

摘要

研究了伴刀豆球蛋白A(Con A)对胚胎视网膜细胞聚集体与细胞层之间黏附的抑制作用以及Con A介导的视网膜细胞上Con A受体的重排。在后续无可溶性凝集素存在的实验中,将聚集体和细胞层与10微克/毫升Con A短暂孵育,可显著降低聚集体与细胞层之间的黏附。Con A的这种作用具有剂量依赖性、温度敏感性,涉及Con A结合后的事件,且可被细胞松弛素B减弱。与抗Con A抗体孵育后,琥珀酰化Con A产生的抑制作用显著增强。通过荧光显微镜观察ConA-受体复合物发现,Con A的结合导致丝状伪足、生长锥扁平区域和轴突边缘的Con A受体清除。这种清除反应可被降低Con A对细胞黏附抑制作用的相同试剂阻止:低温、Con A的琥珀酰化或细胞松弛素B。在37℃释放Con A可恢复聚集体-细胞层黏附。蛋白质和ATP合成抑制剂并不能阻止黏附能力的恢复。然而,在低温下释放Con A并不能阻止恢复。结果表明,细胞间黏附受到与视网膜细胞上Con A-受体复合物重新分布相关事件的抑制。

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