Cellular Dynamics and Development Department, Centre de Génétique Moléculaire (FRE 3144), Centre National de Recherche Scientifique, 1 ave de la Terrasse, Gif sur Yvette, France.
Cell Death Differ. 2011 May;18(5):793-805. doi: 10.1038/cdd.2010.141. Epub 2010 Nov 26.
Although much has been learned in recent years about the apoptotic machinery, the mechanisms underlying survival and death choices during development of metazoans remain less clearly understood. During early oogenesis in Drosophila, a small excess in the number of specialized somatic cells, called polar cells (PCs), produced at follicle extremities is reduced to exactly two cells through apoptosis by mid-oogenesis. We have found that PCs destined to die first lose their apical contacts and then round up and shrink progressively until they disappear. Caspases are activated only once the cells have begun to shrink, suggesting that they are implicated in this part of the process, but not in the initial loss of cell polarity. Loss-of-function analyses based on mutant, clonal and RNAi approaches show that among the RHG family of pro-apoptotic factors, Hid is specifically necessary for PC apoptosis, as well as the initiator caspase Dronc and its adaptor Dark/Apaf-1, and likely several effector caspases, in particular Drice. In addition, we show that Hid protein and transcripts accumulate specifically in PCs destined to die, while the anti-apoptotic factor Diap1 is downregulated in these cells in a hid-dependent manner. Therefore, our results implicate the Hid-Diap1 module as an important regulatory point in a developmental case of apoptosis.
尽管近年来对细胞凋亡机制有了很多了解,但多细胞动物发育过程中生存和死亡选择的机制仍不太清楚。在果蝇的早期卵子发生过程中,在滤泡末端产生的称为极细胞(PC)的专门体细胞数量略有过剩,通过中期卵子发生减少到仅两个细胞。我们发现,最初注定要死亡的 PC 会失去它们的顶端接触,然后逐渐变圆并逐渐缩小,直到它们消失。只有当细胞开始缩小后,半胱天冬酶才会被激活,这表明它们参与了这一过程的这一部分,但不参与细胞极性的初始丧失。基于突变体、克隆和 RNAi 方法的功能丧失分析表明,在促凋亡因子 RHG 家族中,Hid 蛋白对于 PC 凋亡以及起始半胱天冬酶 Dronc 及其衔接蛋白 Dark/Apaf-1 以及可能的几种效应半胱天冬酶,特别是 Drice ,是特异性必需的。此外,我们还表明,Hid 蛋白和转录物特异性地在注定要死亡的 PC 中积累,而抗凋亡因子 Diap1 以 hid 依赖的方式在这些细胞中下调。因此,我们的结果表明,Hid-Diap1 模块是细胞凋亡的一个重要调节点。