Drosophila larval hematopoiesis takes place at the lymph gland, where blood cell progenitors differentiate into two possible cell types: Plasmatocytes, analogous to mammalian macrophages, or crystal cells that share features with mammalian megakaryocytes; a third cell type, the lamellocytes, develop only upon specific immune challenges. Here we show that autophagy inhibition in blood cell progenitors results in augmented crystal cell differentiation due to Notch accumulation. Notch activation during hematopoiesis depends on the endocytic pathway, which crosstalks with autophagy: While Notch activation depends on endocytosis and endosomal maturation, Notch lysosomal degradation requires autophagy. TOR signaling inhibits autophagosome biogenesis that in turn prevents the formation of Notch-containing amphisomes, which are necessary for Notch lysosomal destruction. Reduction of Notch lysosomal degradation shifts the balance towards Notch activation at endosomal membranes, thereby enhancing differentiation of crystal cells. Our work therefore defines a mechanism of regulation of immune cell differentiation in response to the nutritional status of the organism.
Autophagy controls differentiation of Drosophila blood cells by regulating Notch levels in response to nutrient availability.
自噬通过调节 Notch 水平来响应营养物质的供应,从而控制果蝇血细胞的分化
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作者:Katz Maximiliano J, RodrÃguez Felipe, Evangelisti FermÃn, Borrat Agustina G, Perez-Pandolfo Sebastián, Peters Tomás, Sommario Natalia, Boccaccio Graciela L, Melani Mariana, Wappner Pablo
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2025 | 起止号: | 2025 Jul 1; 16(1):5858 |
| doi: | 10.1038/s41467-025-58389-y | 种属: | Drosophila |
| 研究方向: | 细胞生物学 | 信号通路: | Autophagy、Notch |
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