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Lysosomal enzymes in the macronucleus of Tetrahymena during its apoptosis-like degradation.

机译:四膜虫细胞凋亡样降解过程中大核中的溶酶体酶。

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A key characteristic of apoptosis is its regulated nuclear degradation. Apoptosis-like nuclear degradation also occurs in the ciliated unicellular organism, Tetrahymena thermophila. Chromatin of the macronucleus undergoes massive condensation, a process that can be blocked by caspase inhibitors. The nucleus becomes TUNEL-positive, and its DNA is cleaved into nucleosome-sized fragments. In a matter of hours the macronucleus is completely degraded, and disappears. The condensed nucleus sequesters acridine orange, which means that it might become an acidic compartment. We therefore asked whether lysosomal bodies fuse with the condensed macronucleus to form an autophagosome. We monitored acid phosphatase (AP) activity, which is associated with lysosomal bodies but is not found in normal nuclei. We find that after the macronucleus condenses AP activity is localized in cap-like structures at its cortex. Later, after the degrading macronucleus loses much of its DNA, acid phosphatase deposits appear deeper within the nucleus. We conclude that although macronuclear elimination is initiated by an apoptosis-like mechanism, its final degradation may be achieved through autophagosomy.
机译:凋亡的关键特征是其调节的核降解。纤毛状单细胞生物嗜热四膜菌也发生类似凋亡的核降解。大核的染色质经历大量的凝结,这一过程可以被胱天蛋白酶抑制剂阻止。核变成TUNEL阳性,其DNA裂解成核小体大小的片段。在几个小时内,大核就会完全降解,然后消失。浓缩的核螯合a啶橙,这意味着它可能变成酸性隔室。因此,我们问溶酶体是否与浓缩的巨核融合形成自噬体。我们监测了酸性磷酸酶(AP)活性,其与溶酶体有关,但在正常细胞核中未发现。我们发现大核凝聚后,AP活性位于其皮层的帽状结构中。后来,在降解的大核失去了许多DNA后,酸性磷酸酶沉积物在核内显得更深。我们得出的结论是,尽管大核消除是通过凋亡样机制启动的,但其最终降解可能是通过自噬进行的。

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