Matsuo T, Takahashi K, Suzuki E, Yamamoto D
Developmental Genetics Group, Mitsubishi Kasei Institute of Life Sciences, Tokyo, Japan.
Cell Tissue Res. 1999 Dec;298(3):397-404. doi: 10.1007/s004419900107.
Rhabdomeres of the Drosophila melanogaster canoemisl mutant ommatidia were twisted, branched, and often fused to each other. A considerable proportion of rhabdomeres were found to have fallen below the retinal basement membrane. Electron-microscopic observations of the mutant ommatidia revealed that microvilli, the subcellular structures composing the rhabdome, were normal. As was the case with partial loss-of-function mutations in the canoe locus, overexpression of the wild-type canoe transgene driven by the heat shock promoter or sevenless enhancer in the wild-type canoe background caused malformation of the rhabdomeres in the adult ommatidia. Immunolabeling of the Canoe protein in the pupal retinae showed that it was accumulated in adherens junctions in photoreceptor rhabdomeres at high concentrations, as well as in pigment cells, bristle cells, and the interjunctional region of photoreceptors at a lower level. In the canoe mutant ommatidia, the Canoe protein concentration was dramatically decreased in adherens junctions, while it was maintained at a level comparable with the wild-type flies in the interjunctional region. Since Canoe or its mammalian homolog AF-6 is known to bind to F-actin and Ras, we suggest the possibility that Canoe couples Ras signaling with cytoskeleton, thereby supporting the straight elongation of rhabdomeres required for development of a regular array of ommatidia.
果蝇黑腹品系canoemisl突变体小眼的视杆扭曲、分支,且常常相互融合。发现相当一部分视杆低于视网膜基底膜。对突变体小眼的电子显微镜观察显示,构成视杆的亚细胞结构微绒毛是正常的。与canoe基因座的部分功能丧失突变情况一样,在野生型canoe背景下,由热休克启动子或seveless增强子驱动的野生型canoe转基因的过表达导致成虫小眼的视杆畸形。对蛹视网膜中Canoe蛋白的免疫标记显示,它在光感受器视杆的黏着连接处大量积累,在色素细胞、刚毛细胞以及光感受器的连接间区域中积累水平较低。在canoe突变体小眼中,黏着连接处的Canoe蛋白浓度显著降低,而在连接间区域维持在与野生型果蝇相当的水平。由于已知Canoe或其哺乳动物同源物AF-6与F-肌动蛋白和Ras结合,我们推测Canoe可能将Ras信号与细胞骨架偶联起来,从而支持小眼规则排列发育所需的视杆的直线伸长。