Fraser S E, Bryant P J
Nature. 1985;317(6037):533-6. doi: 10.1038/317533a0.
Responses of developing tissues to experimental disruption demonstrate that cell interaction is important both in generating positional information and in controlling growth. However, the mechanism by which cells interact and the range over which the interactions are effective are not known. In the imaginal disks of Drosophila melanogaster, experiments on pattern regulation following surgical ablation suggest that the cell interactions are very local in nature; in fact, most of the data can be explained by assuming that cells interact only with their immediate neighbours. In contrast, studies of cell division patterns in the same tissue indicate that the "local' proliferative response to an ablation extends over a distance of up to about eight cell diameters. Still longer-range interactions have been proposed on the basis of theoretical considerations. It is possible that the interactions are mediated by the transfer of small molecules through gap junctions, as gap junctions are abundant in imaginal disks at the appropriate developmental stages. We have explored the range, timing and directionality of dye coupling between the cells of the wing disk as a test of the possible role of gap junctions in imaginal disk patterning. Our results indicate that interactions over different ranges are possible depending on the nature of the molecule being transferred.
发育中的组织对实验性破坏的反应表明,细胞间相互作用在生成位置信息和控制生长方面都很重要。然而,细胞相互作用的机制以及这种相互作用有效的范围尚不清楚。在黑腹果蝇的成虫盘上,关于手术切除后的模式调节实验表明,细胞间相互作用本质上是非常局部的;事实上,大多数数据可以通过假设细胞仅与其紧邻的邻居相互作用来解释。相比之下,对同一组织中细胞分裂模式的研究表明,对切除的“局部”增殖反应可延伸至大约八个细胞直径的距离。基于理论考虑,有人提出了更远距离的相互作用。由于间隙连接在适当的发育阶段在成虫盘中大量存在,因此这些相互作用有可能是由小分子通过间隙连接的传递介导的。我们研究了翅盘细胞间染料偶联的范围、时间和方向性,以此来检验间隙连接在成虫盘模式形成中可能发挥的作用。我们的结果表明,根据被转移分子的性质,不同范围的相互作用都是可能的。