Vied Cynthia, Kalderon Daniel
Department of Biological Sciences, Columbia University, 1212 Amsterdam Avenue, New York, NY 10027, USA.
Development. 2009 Jul;136(13):2177-86. doi: 10.1242/dev.035329. Epub 2009 May 27.
Normal self-renewal of follicle stem cells (FSCs) in the Drosophila ovary requires Hedgehog (Hh) signaling. Excess Hh signaling, induced by loss of patched (ptc), causes cell-autonomous duplication of FSCs. We have used a genetic screen to identify Mastermind (Mam), the Notch pathway transcriptional co-activator, as a rare dose-dependent modifier of aberrant FSC expansion induced by excess Hh. Complete loss of Mam activity severely compromises the persistence of both normal and ptc mutant FSCs, but does not affect the maintenance of ovarian germline stem cells. Thus, Mam, like Hh, is a crucial stem cell factor that acts selectively on FSCs in the ovary. Surprisingly, other Notch pathway components, including Notch itself, are not similarly required for FSC maintenance. Furthermore, excess Notch pathway activity alone accelerates FSC loss and cannot ameliorate the more severe defects of mam mutant FSCs. This suggests an unconventional role for Mam in FSCs that is independent of Notch signaling. Loss of Mam reduces the expression of a Hh pathway reporter in FSCs but not in wing discs, suggesting that Mam might enhance Hh signaling specifically in stem cells of the Drosophila ovary.
果蝇卵巢中卵泡干细胞(FSCs)的正常自我更新需要刺猬信号通路(Hh)。由patched(ptc)缺失诱导的过量Hh信号会导致FSCs发生细胞自主复制。我们通过遗传筛选确定了Notch信号通路转录共激活因子Mastermind(Mam),它是过量Hh诱导的异常FSC扩增的一种罕见的剂量依赖性修饰因子。Mam活性完全丧失会严重损害正常和ptc突变型FSCs的持续性,但不影响卵巢生殖系干细胞的维持。因此,Mam与Hh一样,是一种关键的干细胞因子,对卵巢中的FSCs具有选择性作用。令人惊讶的是,包括Notch本身在内的其他Notch信号通路成分对FSC维持并非同样必需。此外,单独的过量Notch信号通路活性会加速FSC丢失,并且无法改善mam突变型FSCs更严重的缺陷。这表明Mam在FSCs中具有独立于Notch信号的非常规作用。Mam的缺失会降低FSCs中Hh信号通路报告基因的表达,但不会降低翅芽中的表达,这表明Mam可能特异性增强果蝇卵巢干细胞中的Hh信号。