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Nuclear degradation dynamics in a nonapoptotic programmed cell death

机译:非凋亡编程细胞死亡中的核降解动态

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Nuclear degradation is a major event during programmed cell death (PCD). The breakdown of nuclear components has been well characterized during apoptosis, one form of PCD. Many nonapoptotic forms of PCD have been identified, but our understanding of nuclear degradation during those events is limited. Here, we take advantage of Drosophila oogenesis to investigate nuclear degeneration during stress-induced apoptotic and developmental nonapoptotic cell death in the same cell type in vivo. We find that nuclear Lamin, a caspase substrate, dissociates from the nucleus as an early event during apoptosis, but remains associated with nuclei during nonapoptotic cell death. Lamin reveals a series of changes in nuclear architecture during nonapoptotic death, including nuclear crenellations and involutions. Stretch follicle cells contribute to these architecture changes, and phagocytic and lysosome-associated machinery in stretch follicle cells promote Lamin degradation. More specifically, we find that the lysosomal cathepsin CP1 facilitates Lamin degradation.
机译:核退化是编程细胞死亡期间的主要事件(PCD)。核心成分的分解在细胞凋亡中具有很好的特征,一种形式的PCD。已经确定了许多非专利形式的PCD,但我们在这些活动期间对核退化的理解有限。在这里,我们利用果蝇OFOCOUSESS来调查在体内相同细胞类型中应激诱导的凋亡和发育非凋亡细胞死亡期间的核退化。我们发现核林林,一种胱天蛋白酶底物,从细胞核分中解离细胞核,但在细胞凋亡期间的早期发生,但在非凋亡细胞死亡期间与核相关联。 Lamin揭示了非凋亡死亡期间核建筑内的一系列变化,包括核克雷基和涉及。拉伸卵泡细胞有助于这些建筑的变化,并且拉伸卵泡细胞中的吞噬和溶酶体相关机械促进层压降解。更具体地,我们发现溶酶体组织蛋白酶CP1有助于层压降解。

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