首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >A rat monoclonal antibody reacting specifically with the tyrosylated form of alpha-tubulin. II. Effects on cell movement organization of microtubules and intermediate filaments and arrangement of Golgi elements
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A rat monoclonal antibody reacting specifically with the tyrosylated form of alpha-tubulin. II. Effects on cell movement organization of microtubules and intermediate filaments and arrangement of Golgi elements

机译:大鼠单克隆抗体与α-微管蛋白的酪氨酰化形式特异性反应。二。对细胞运动微管和中间细丝的组织以及高尔基体元素排列的影响

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摘要

A rat monoclonal antibody against yeast alpha-tubulin (clone YL 1/2; Kilmartin, J. V., B. Wright, and C. Milstein, 1982, J. Cell Biol., 93:576-582) that reacts specifically with the tyrosylated form of alpha- tubulin and readily binds to tubulin in microtubules when injected into cultured cells (see Wehland, J., M. C. Willingham, and I. V. Sandoval, 1983, J. Cell Biol., 97:1467-1475) was used to study microtubule organization and function in living cells. Depending on the concentration of YL 1/2 that was injected the following striking effects were observed: (a) When injected at a low concentration (2 mg IgG/ml in the injection solution), where microtubules were decorated without changing their distribution, intracellular movement of cell organelles (saltatory movement) and cell translocation were not affected. Intermediate concentrations (6 mg IgG/ml) that induced bundling but no perinuclear aggregation of microtubules abolished saltatory movement and cell translocation, and high concentrations (greater than 12 mg IgG/ml) that induced perinuclear aggregation of microtubules showed the same effect. (b) YL 1/2, when injected at intermediate and high concentrations, arrested cells in mitosis. Such cells showed no normal spindle structures. (c) Injection of an intermediate concentration of YL 1/2 that stopped saltatory movement caused little or no aggregation of intermediate filaments and no dispersion of the Golgi complex. After injection of high concentrations, resulting in perinuclear aggregation of microtubules, intermediate filaments formed perinuclear bundles and the Golgi complex became dispersed analogous to results obtained after treatment of cells with colcemid. (d) When rhodamine-conjugated YL 1/2 was injected at concentrations that stopped saltatory movement and arrested cells in mitosis, microtubule structures could be visualized and followed for several hours in living cells by video image intensification microscopy. They showed little or no change in distribution and organization during observation, even though these microtubule structures appeared not to be stabilized by injected YL 1/2 since they were readily depolymerized by colcemid or cold treatment and repolymerized upon drug removal or rewarming to 37 degrees C, respectively. These results are discussed in terms of the participation of microtubules in cellular activities such as cell movement and cytoplasmic organization and in terms of the specificity of YL 1/2 for the tyrosylated form of alpha-tubulin.
机译:抗酵母α-微管蛋白的大鼠单克隆抗体(克隆YL 1/2; Kilmartin,JV,B。Wri​​ght和C. Milstein,1982,J。Cell Biol。,93:576-582)特异性地与酪氨酰化反应当注射到培养细胞中时,α-微管蛋白的表达并易于与微管中的微管蛋白结合(参见Wehland,J.,MC Willingham和IV Sandoval,1983,J.Cell Biol。,97:1467-1475)被用于研究微管的组织在活细胞中起作用根据注入的YL 1/2的浓度,观察到以下惊人的效果:(a)当以低浓度(注入溶液中2 mg IgG / ml)注入时,微管被修饰而不改变其分布,细胞内细胞器的运动(盐运动)和细胞易位不受影响。诱导集束但无微管核周围聚集的中间浓度(6 mg IgG / ml)消除了盐分运动和细胞移位,而诱导微管核周围聚集的高浓度(大于12 mg IgG / ml)显示了相同的效果。 (b)以中等浓度和高浓度注射时,YL 1/2可使细胞停滞在有丝分裂中。这种细胞没有正常的纺锤体结构。 (c)注入中等浓度的YL 1/2阻止盐分运动,几乎没有或没有中间丝的聚集,也没有高尔基体的分散。注射高浓度后,导致微管在核周聚集,中间细丝形成核周束,高尔基复合体变得分散,类似于用秋水仙素处理细胞后获得的结果。 (d)当以使盐移动停止并阻止细胞在有丝分裂中停滞的浓度注射若丹明缀合的YL 1/2时,可以观察到微管结构,并通过视频图像显微镜观察活细胞中的几个小时。尽管观察到这些微管结构似乎无法通过注入的YL 1/2稳定,但它们在分布和组织方面几乎没有改变,甚至没有变化,因为它们很容易通过秋水仙胶或冷处理解聚,并在去除药物或重新升温至37摄氏度后重新聚合, 分别。根据微管参与细胞活动(例如细胞运动和细胞质组织)以及YL 1/2对酪氨酸化形式的α-微管蛋白的特异性讨论了这些结果。

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