盘状盘基骨鞘细胞的发育命运在很大程度上取决于饥饿开始时细胞周期的位置

T. Ohmori, Y. Maeda
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引用次数: 78

摘要

本文采用诱导良好同步的方法,分析了盘状盘齿钢鞘Ax-2的发育与饥饿开始时细胞周期的关系,并特别参考了极化细胞团(slugs)形成过程中的分选行为。不同细胞周期位置的饥饿细胞在进一步培养中表现出不同的发育特征。例如,在有丝分裂和分裂前的细胞被分类到迁移鼻涕虫的前柄区,而在g2期的大部分时间里饥饿的细胞被分类到后孢子区。细胞聚集和尖端形成的时间进程也有很大的变化,与细胞周期相关,g2期后期的细胞饥饿发育最快。不同的趋化性和内聚性通常被认为是盘基骨门发育过程中细胞分选的重要因素。事实上,在细胞周期的任何特定阶段,在饥饿的细胞中检测到对化学引诱剂cAMP的趋化能力的显着差异。抗edta内聚性也因细胞周期的不同而不同,在聚集速度更快的细胞中更强。这些发现表明细胞周期与细胞分选和模式形成密切相关。这里讨论了细胞周期相关事件的可能意义,特别强调细胞聚集的过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The developmental fate of dictyostelium discoideum cells depends greatly on the cell-cycle position at the onset of starvation

The relationship between the development of Dictyostelium discoideum Ax-2 and the cell cycle at the onset of starvation was analysed with special reference to sorting behaviors during the formation of polarized cell masses (slugs), using a method for inducing good synchrony. Cells starved at different cell-cycle positions showed different developmental features during further culture. For example, cells just before mitosis and dividing cells were sorted out into the anterior prestalk zone of migrating slugs, while cells starved during most of the G2-phase, into the posterior prespore zone. Time courses of cell aggregation and tip formation were also found to vary greatly in a cell-cycle-related manner, and cells starved during the late G2-phase showed the most rapid development. Differential chemotaxis and cohesiveness are generally considered to be important for cell sorting in Dictyostelium development. In fact, remarkable differences in the chemotactic ability to a chemoattractant, cAMP, were detected among cells starved at any particular phase of the cell cycle. EDTA-resistant cohesiveness was also acquired differently depending on the cell cycle, and it was stronger in the cells showing more rapid aggregation. These findings indicate a close relation of the cell cycle to the cell sorting and pattern formation. The possible significance of the cell-cycle-related events presented here is discussed, with special emphasis on the process of cell aggregation.

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