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钙内流调节衣藻鞭毛膜内抗体诱导的糖蛋白运动。

Calcium influx regulates antibody-induced glycoprotein movements within the Chlamydomonas flagellar membrane.

作者信息

Bloodgood R A, Salomonsky N L

机构信息

Department of Anatomy and Cell Biology, University of Virginia School of Medicine, Charlottesville 22908.

出版信息

J Cell Sci. 1990 May;96 ( Pt 1):27-33. doi: 10.1242/jcs.96.1.27.

Abstract

The Chlamydomonas flagellar surface exhibits a number of dynamic membrane phenomena associated with whole-cell gliding locomotion and the early events in fertilization. Crosslinking of a specific population of flagellar surface-exposed glycoproteins with the lectin concanavalin A or an anti-carbohydrate mouse monoclonal antibody, designated FMG-1, results in a characteristic pattern of glycoprotein redistribution within the plane of the flagellar membrane. Recent evidence suggests that flagellar membrane glycoprotein movements are associated with both whole-cell gliding motility and the early events in mating. It is of interest to determine the transmembrane signaling pathway whereby crosslinking of the external domains of flagellar glycoproteins activates the intraflagellar machinery responsible for translocation of flagellar membrane glycoproteins. The redistribution of flagellar membrane glycoproteins requires micromolar levels of free calcium in the medium; lowering the free calcium concentration to 10(-7) M results in complete but reversible inhibition of redistribution. Redistribution is maximal in the presence of 20 microM free calcium in the medium. Redistribution is inhibited in the presence of 20 microM free calcium by the calmodulin antagonists trifluoperazine, W-7 and calmidazolium, the calcium channel blockers diltiazem, methoxyverapamil (D-600) and barium chloride, and the local anesthetics, lidocaine and procaine. The actions of all of these agents can be interpreted in terms of a requirement for calcium in the signaling mechanism associated with flagellar glycoprotein redistribution. In particular, the requirement for micromolar calcium in the external medium and the effects of specific calcium channel blockers suggest that flagellar membrane glycoprotein crosslinking may induce an increase in calcium influx, which may be the initial trigger for activating the flagellar machinery responsible for active movement of flagellar membrane glycoproteins.

摘要

衣藻鞭毛表面呈现出许多与全细胞滑动运动以及受精早期事件相关的动态膜现象。用凝集素伴刀豆球蛋白A或一种抗碳水化合物小鼠单克隆抗体(称为FMG-1)对特定群体的鞭毛表面暴露糖蛋白进行交联,会导致糖蛋白在鞭毛膜平面内重新分布的特征模式。最近的证据表明,鞭毛膜糖蛋白的运动与全细胞滑动运动以及交配早期事件都有关。确定跨膜信号通路很有意义,通过该通路,鞭毛糖蛋白外部结构域的交联激活负责鞭毛膜糖蛋白转运的鞭毛内机制。鞭毛膜糖蛋白的重新分布需要培养基中微摩尔水平的游离钙;将游离钙浓度降低到10^(-7) M会导致重新分布完全但可逆的抑制。在培养基中存在20微摩尔游离钙时,重新分布最大。在存在20微摩尔游离钙的情况下,钙调蛋白拮抗剂三氟拉嗪、W-7和平痛新、钙通道阻滞剂地尔硫卓、甲氧基维拉帕米(D-600)和氯化钡以及局部麻醉剂利多卡因和普鲁卡因会抑制重新分布。所有这些试剂的作用都可以根据与鞭毛糖蛋白重新分布相关的信号机制中对钙的需求来解释。特别是,外部培养基中对微摩尔钙的需求以及特定钙通道阻滞剂的作用表明,鞭毛膜糖蛋白交联可能会诱导钙内流增加,这可能是激活负责鞭毛膜糖蛋白主动运动的鞭毛机制的初始触发因素。

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