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Cellular and nuclear degradation during apoptosis

机译:细胞凋亡过程中的细胞和核降解

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Apoptosis ensures quick death and quiet clearance of unwanted or damaged cells, without inducing much, if any, immunological responses from the organism. In metazoan organisms, apoptotic cells are swiftly engulfed by other cells. The degradation of cellular content is initiated in apoptotic cells and completed within engulfing cells. In apoptotic cells, caspase-mediated proteolysis cleaves protein substrates into fragments; nuclear DNA is partially degraded into nucleosomal units; and autophagy potentially contributes to apoptotic cell removal. In engulfing cells, specific signaling pathways promote the sequential fusion of intracellular vesicles with phagosomes and lead to the complete degradation of apoptotic cells in an acidic environment. Phagocytic receptors that initiate the engulfment of apoptotic cells play an additional and crucial role in initiating phagosome maturation through activating these signaling pathways. Here we highlight recent discoveries made in invertebrate models and mammalian systems, focusing on the molecular mechanisms that regulate the efficient degradation of apoptotic cells.
机译:凋亡可确保快速死亡并清除不需要的或受损的细胞,而不会引起该生物产生大量(如果有的话)免疫反应。在后生生物中,凋亡细胞被其他细胞迅速吞噬。细胞内含物的降解在凋亡细胞中引发,并在吞噬细胞中完成。在凋亡细胞中,半胱天冬酶介导的蛋白水解作用将蛋白质底物裂解为片段;核DNA被部分降解为核小体单位;自噬可能有助于凋亡细胞的去除。在吞噬细胞中,特定的信号通路促进细胞内囊泡与吞噬体的顺序融合,并导致酸性环境中凋亡细胞的完全降解。引发凋亡细胞吞噬的吞噬受体在通过激活这些信号传导途径来启动吞噬体成熟中起着额外的至关重要的作用。在这里,我们重点介绍无脊椎动物模型和哺乳动物系统中的最新发现,重点研究调节凋亡细胞有效降解的分子机制。

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