Grmai Lydia, Michaca Manuel, Lackner Emily, Nampoothiri V P Narayanan, Vasudevan Deepika
bioRxiv. 2023 Feb 28:2023.02.27.530289. doi: 10.1101/2023.02.27.530289.
Reproduction is an energy-intensive process requiring systemic coordination. However, the inter-organ signaling mechanisms that relay nutrient status to modulate reproductive output are poorly understood. Here, we use as a model to establish the Integrated Stress response (ISR) transcription factor, Atf4, as a fat tissue metabolic sensor which instructs oogenesis. We demonstrate that Atf4 regulates the lipase Brummer to mediate yolk lipoprotein synthesis in the fat body. Depletion of in the fat body also blunts oogenesis recovery after amino acid deprivation and re-feeding, suggestive of a nutrient sensing role for Atf4. We also discovered that Atf4 promotes secretion of a fat body-derived neuropeptide, CNMamide, which modulates neural circuits that promote egg-laying behavior (ovulation). Thus, we posit that ISR signaling in fat tissue acts as a "metabolic sensor" that instructs female reproduction: directly, by impacting yolk lipoprotein production and follicle maturation, and systemically, by regulating ovulation.
生殖是一个需要全身协调的能量密集型过程。然而,将营养状况传递以调节生殖输出的器官间信号传导机制却鲜为人知。在这里,我们以[具体模型未给出]为模型,将综合应激反应(ISR)转录因子Atf4确立为一种指导卵子发生的脂肪组织代谢传感器。我们证明,Atf4调节脂肪酶Brummer以介导脂肪体中卵黄脂蛋白的合成。脂肪体中[具体物质未给出]的缺失也会削弱氨基酸剥夺和重新喂食后卵子发生的恢复,这表明Atf4具有营养感知作用。我们还发现,Atf4促进脂肪体衍生的神经肽CNMamide的分泌,该神经肽调节促进产卵行为(排卵)的神经回路。因此,我们认为脂肪组织中的ISR信号传导作为一种“代谢传感器”指导雌性生殖:直接通过影响卵黄脂蛋白的产生和卵泡成熟,以及通过调节排卵进行全身调节。