McNutt N S, Culp L A, Black P H
J Cell Biol. 1971 Sep;50(3):691-708. doi: 10.1083/jcb.50.3.691.
The ultrastructural appearances of normal 3T3, SV40-transformed 3T3 (SV-3T3), and F1A revertant cell lines are compared. Both confluent and subconfluent cultures are described after in situ embedding of the cells for electron microscopy. There is striking nuclear pleomorphism in F1A revertant cells, with many cells having large nuclei compared to the less variable nuclear morphology of both normal 3T3 and SV-3T3 cells. Under the culture conditions used, deep infoldings of the nuclear envelope are prominent in growing cells, e.g., subconfluent normal 3T3 and confluent SV-3T3 cells. Such infoldings are infrequently seen in cultures which display contact inhibition of growth, e.g., normal 3T3 or F1A revertant cells grown just to confluence. In confluent cultures, the cytoplasmic organelles in revertant cells closely resemble those of normal 3T3 cells. In both normal and revertant cells in confluent culture, the peripheral cytoplasm (ectoplasm) has many 70 A filaments (alpha filaments), which are frequently aggregated into bundles. Alpha filaments are also abundant in the ectoplasm near regions of cell-to-cell apposition and in the motile cell processes (filopodia). The abundance and state of aggregation of alpha filaments correlates with contact inhibition of movement and growth in these cell lines since fewer bundles of alpha filaments are seen in growing cells than in contact-inhibited cells. This observation suggests that these filaments may be an important secondary component in the regulation of contact inhibition of movement and, possibly, of growth in normal and revertant cells.
比较了正常3T3、SV40转化的3T3(SV - 3T3)和F1A回复细胞系的超微结构。细胞原位包埋用于电子显微镜观察后,描述了汇合和亚汇合培养物。F1A回复细胞中存在显著的核多形性,与正常3T3和SV - 3T3细胞核形态变化较小相比,许多细胞具有大核。在所使用的培养条件下,核膜的深层折叠在生长细胞中很突出,例如亚汇合的正常3T3和汇合的SV - 3T3细胞。在显示生长接触抑制的培养物中,如正常3T3或刚生长至汇合的F1A回复细胞中,这种折叠很少见。在汇合培养物中,回复细胞中的细胞质细胞器与正常3T3细胞的非常相似。在汇合培养的正常细胞和回复细胞中,周边细胞质(外质)都有许多70埃的细丝(α细丝),它们经常聚集成束。α细丝在细胞间接触区域附近的外质和运动细胞突起(丝状伪足)中也很丰富。α细丝的丰度和聚集状态与这些细胞系中运动和生长的接触抑制相关,因为在生长细胞中看到的α细丝束比接触抑制细胞中的少。这一观察结果表明,这些细丝可能是调节正常细胞和回复细胞中运动和生长接触抑制的重要次要成分。