Kale Abhijit, Rimesso Gerard, Baker Nicholas E
Department of Genetics, Albert Einstein College of Medicine, 1300 Morris Park Avenue, Bronx, NYC, NY, United States of America.
Department of Ophthalmology and Visual Sciences, Albert Einstein College of Medicine, 1300 Morris Park Avenue, Bronx, NYC, NY, United States of America.
PLoS One. 2016 Dec 28;11(12):e0167637. doi: 10.1371/journal.pone.0167637. eCollection 2016.
Drosophila imaginal disc cells exhibit preferred cell division orientations according to location within the disc. These orientations are altered if cell death occurs within the epithelium, such as is caused by cell competition or by genotypes affecting cell survival. Both normal cell division orientations, and their orientations after cell death, depend on the Fat-Dachsous pathway of planar cell polarity (PCP). The hypothesis that cell death initiates a planar polarity signal was investigated. When clones homozygous for the pineapple eye (pie) mutation were made to initiate cell death, neither Dachsous nor Fat was required in pie cells for the re-orientation of nearby cells, indicating a distinct signal for this PCP pathway. Dpp and Wg were also not needed for pie clones to re-orient cell division. Cell shapes were evaluated in wild type and mosaic wing discs to assess mechanical consequences of cell loss. Although proximal wing disc cells and cells close to the dorso-ventral boundary were elongated in their preferred cell division axes in wild type discs, cell shapes in much of the wing pouch were symmetrical on average and did not predict their preferred division axis. Cells in pie mutant clones were slightly larger than their normal counterparts, consistent with mechanical stretching following cell loss, but no bias in cell shape was detected in the surrounding cells. These findings indicate that an unidentified signal influences PCP-dependent cell division orientation in imaginal discs.
果蝇成虫盘细胞根据其在盘中的位置表现出特定的细胞分裂方向。如果上皮组织内发生细胞死亡,比如由细胞竞争或影响细胞存活的基因型导致的细胞死亡,这些方向就会改变。正常的细胞分裂方向以及细胞死亡后的方向都依赖于平面细胞极性(PCP)的Fat-Dachsous信号通路。研究了细胞死亡引发平面极性信号的假说。当使携带菠萝眼(pie)突变的纯合克隆引发细胞死亡时,pie细胞中附近细胞重新定向并不需要Dachsous和Fat,这表明该PCP信号通路存在一个独特的信号。pie克隆重新定向细胞分裂也不需要Dpp和Wg。在野生型和嵌合翅盘中评估细胞形状以评估细胞丢失的机械后果。虽然在野生型翅盘中,近端翅盘细胞和靠近背腹边界的细胞在其偏好的细胞分裂轴上伸长,但翅囊大部分区域的细胞形状平均而言是对称的,并且无法预测其偏好的分裂轴。pie突变克隆中的细胞比正常细胞略大,这与细胞丢失后的机械拉伸一致,但在周围细胞中未检测到细胞形状的偏差。这些发现表明,一种未知信号影响成虫盘中依赖PCP的细胞分裂方向。