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Surface functions during mitosis. III. Quantitative analysis of ligand- receptor movement into the cleavage furrow: diffusion vs. flow

机译:有丝分裂期间的表面功能。三,定量分析配体-受体运动进入裂解沟:扩散与流量

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摘要

The surface distribution of concanavalin A (Con A) bound to cell membrane receptors varies dramatically as a function of mitotic phase. The lectin is distributed diffusely on cells labeled and observed between mid-prophase and early anaphase, whereas cells observed in late anaphase or telophase demonstrate a marked accumulation of Con A- receptor complexes over the developing cleavage furrow (Berlin, Oliver, and Walter. 1978. Cell. 15:327-341). In this report, we first use a system based on video intensification fluorescence microscopy to describe the simultaneous changes in cell shape and in lectin-receptor complex topography during progression of single cells through the mitotic cycle. The video analysis establishes that fluorescein succinyl Con A (F-S Con A)-receptor complex redistribution begins coincident with the first appearance of the cleavage furrow and is essentially complete within 2-3 min. This remarkable redistribution of surface fluorescence occurs during only a modest change in cell shape from a sphere to a belted cylinder. It reflects the translocation of complexes and not the accumulation of excess labeled membrane in the cleavage furrow: first, bound fluorescent cholera toxin which faithfully outlines the plasma membrane is not accumulated in the cleavage furrow, and, second, electron microscopy of peroxidase-Con A labeled cells undergoing cleavage shows that there is a high linear density of lectin within the furrow while Con A is virtually eliminated from the poles. The rate of surface movement of F-S Con A was quantitated by photon counting during a repetitive series of laser-excited fluorescence scans across dividing cells. Results were analyzed in terms of two alternative models of movement: a flow model in which complexes moved unidirectionally at constant velocity, and a diffusion model in which complexes could diffuse freely but were trapped at the cleavage furrow. According to these models, the observed rates of accumulation were attainable at either an effective flow velocity of approximately 1 micron/min, or an effective diffusion coefficient of approximately 10(- 9) cm2/s. However, in separate experiments the lectin-receptor diffusion rate measured directly by the method of fluorescence recovery after photobleaching (FRAP) on metaphase cells was only approximately 10(-10) cm2/s. Most importantly, photobleaching experiments during the actual period of F-S Con A accumulation showed that lectin-receptor movement during cleavage occurs unidirectionally. These results rule out diffusion and make a process of oriented flow of ligand-receptor complexes the most likely mechanism for ligand-receptor accumulation in the cleavage furrow.
机译:结合细胞膜受体的伴刀豆球蛋白A(Con A)的表面分布随有丝分裂期而变化很大。凝集素散布在标记的细胞上,并在前中期和后期后期之间观察到,而在后期后期或末期阶段观察到的细胞表明,Con A-受体复合物在发育的卵裂沟中有明显的积累(Berlin,Oliver和Walter。1978年) (细胞15:327-341)。在此报告中,我们首先使用基于视频增强荧光显微镜的系统来描述在单个细胞通过有丝分裂周期过程中细胞形状和凝集素受体复杂形貌的同时变化。视频分析表明,荧光素琥珀酰Con A(F-S Con A)-受体复合物的重新分布与卵裂沟的首次出现同时开始,并在2-3分钟内基本完成。表面荧光的这种显着重新分布仅发生在从球形到带状圆柱体的细胞形状发生适度变化的过程中。它反映了复合物的易位,而不是切割沟中过量标记膜的积聚:首先,忠实地勾勒出质膜的结合的霍乱荧光霍乱毒素未在切割沟中积聚,其次,电子显微镜检查过氧化物酶-Con A进行切割的标记细胞表明,犁沟中存在高的线粒体凝集素浓度,而实际上从两极中消除了ConA。 F-S Con A的表面运动速率是通过在分裂细胞中重复进行一系列激光激发荧光扫描过程中的光子计数来定量的。根据两种可选的运动模型对结果进行了分析:复合体以恒定速度单向运动的流动模型,以及复合物可以自由扩散但陷于分裂沟的扩散模型。根据这些模型,在大约1微米/分钟的有效流速或大约10(-9)cm2 / s的有效扩散系数下,可获得观察到的累积速率。但是,在单独的实验中,直接用荧光漂白后的荧光恢复方法(FRAP)在中期细胞上直接测定的凝集素受体扩散速率仅为大约10(-10)cm2 / s。最重要的是,在F-S Con A积累的实际期间进行的光漂白实验表明,裂解过程中的凝集素受体运动是单向发生的。这些结果排除了扩散,并使配体-受体复合物定向流动的过程最可能是卵裂沟中配体-受体积累的机制。

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