Barth Julia M I, Hafen Ernst, Köhler Katja
Institute of Molecular Systems Biology, ETH Zurich, Zurich, Switzerland.
BMC Dev Biol. 2012 Dec 5;12:35. doi: 10.1186/1471-213X-12-35.
The proper balance of autophagy, a lysosome-mediated degradation process, is indispensable for oogenesis in Drosophila. We recently demonstrated that egg development depends on autophagy in the somatic follicle cells (FC), but not in the germline cells (GCs). However, the lack of autophagy only affects oogenesis when FCs are autophagy-deficient but GCs are wild type, indicating that a dysfunctional signaling between soma and germline may be responsible for the oogenesis defects. Thus, autophagy could play an essential role in modulating signal transduction pathways during egg development.
Here, we provide further evidence for the necessity of autophagy during oogenesis and demonstrate that autophagy is especially required in subsets of FCs. Generation of autophagy-deficient FCs leads to a wide range of phenotypes that are similar to mutants with defects in the classical cell-cell signaling pathways in the ovary. Interestingly, we observe that loss of autophagy leads to a precocious activation of the Notch pathway in the FCs as monitored by the expression of Cut and Hindsight, two downstream effectors of Notch signaling.
Our findings point to an unexpected function for autophagy in the modulation of the Notch signaling pathway during Drosophila oogenesis and suggest a function for autophagy in proper receptor activation. Egg development is affected by an imbalance of autophagy between signal sending (germline) and signal receiving cell (FC), thus the lack of autophagy in the germline is likely to decrease the amount of active ligand and accordingly compensates for increased signaling in autophagy-defective follicle cells.
自噬是一种由溶酶体介导的降解过程,其适当平衡对于果蝇的卵子发生不可或缺。我们最近证明,卵子发育依赖于体细胞卵泡细胞(FC)中的自噬,而非生殖细胞(GC)中的自噬。然而,仅当FC自噬缺陷而GC为野生型时,自噬的缺失才会影响卵子发生,这表明体细胞与生殖细胞之间功能失调的信号传导可能是卵子发生缺陷的原因。因此,自噬可能在卵子发育过程中调节信号转导通路方面发挥重要作用。
在此,我们为卵子发生过程中自噬的必要性提供了进一步证据,并证明自噬在FC的特定亚群中尤为必需。自噬缺陷型FC的产生会导致一系列表型,这些表型与卵巢中经典细胞间信号通路存在缺陷的突变体相似。有趣的是,我们观察到,通过Notch信号的两个下游效应分子Cut和Hindsight的表达监测发现,自噬的缺失会导致FC中Notch通路的过早激活。
我们的研究结果指出了自噬在果蝇卵子发生过程中对Notch信号通路调节方面的意外功能,并暗示了自噬在适当受体激活中的功能。卵子发育受到信号发送细胞(生殖细胞)和信号接收细胞(FC)之间自噬失衡的影响,因此生殖细胞中自噬的缺乏可能会减少活性配体的数量,从而相应地补偿自噬缺陷型卵泡细胞中增加的信号传导。