Berns M W, Rattner J B, Brenner S, Meredith S
J Cell Biol. 1977 Feb;72(2):351-67. doi: 10.1083/jcb.72.2.351.
An argon ion laser microbeam (488 and 514 nm) was used to selectively irradiate one of the two centriolar regions of rat kangaroo Potorous tridactylis (PtK2) prophase cells in vitro. The cells were sensitized to the laser radiation by treatment with acridine orange (0.1-0.2 mug/ml). Ultrastructural examination of the irradiated centriolar regions demonstrated that the primary site of damage was the pericentriolar material. This result suggests that nucleic acid is present in the pericentriolar material. Behavioral and ultrastructural analysis demonstrated that cells with one damaged pericentriolar zone could undergo (a) nuclear membrane breakdown, (b) chromosome condensation, (c) metaphase plate formation, and (d) cytokinesis. However, the chromosomes neither separated nor exhibited any anaphase movements. Detailed ultrastructural analysis revealed the presence of kinetochore microtubules on both sides of chromosome mass and a lack of microtubules in the cytokinesis constriction. These results indicate that the pericentriolar material is important in spindle orgainization and essential for the formation of the interpolar microtubules.
使用氩离子激光微束(488纳米和514纳米)在体外选择性照射袋鼠大鼠(PtK2)前期细胞的两个中心粒区域之一。通过用吖啶橙(0.1 - 0.2微克/毫升)处理使细胞对激光辐射敏感。对受照射的中心粒区域进行超微结构检查表明,损伤的主要部位是中心粒周围物质。该结果表明中心粒周围物质中存在核酸。行为和超微结构分析表明,具有一个受损中心粒周围区域的细胞可以经历(a)核膜破裂,(b)染色体浓缩,(c)中期板形成,以及(d)胞质分裂。然而,染色体既不分离也不表现出任何后期运动。详细的超微结构分析显示在染色体团块两侧存在动粒微管,并且在胞质分裂缢缩处缺乏微管。这些结果表明中心粒周围物质在纺锤体组织中很重要,并且对于极间微管的形成至关重要。