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Beclin 1 cleavage by caspase-3 inactivates autophagy and promotes apoptosis

机译:caspase-3对Beclin 1的切割可灭活自噬并促进细胞凋亡

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Autophagy and apoptosis are both highly regulated biological processes that play essential roles in tissue homeostasis, development and diseases. Autophagy is also described as a mechanism of death pathways, however, the precise mechanism of how autophagy links to cell death remains to be fully understood. Beclin 1 is a dual regulator for both autophagy and apoptosis. In this study we found that Beclin 1 was a substrate of caspase-3 with two cleavage sites at positions 124 and 149, respectively. Furthermore, the autophagosome formation occurred, followed by the appearance of morphological hallmarks of apoptosis after staurosporine treatment. The cleavage products of Beclin 1 reduced autophagy and promoted apoptosis in HeLa cells and the cells in which Beclin 1 was stably knocked down by speci fi c shRNA. In addition, the cleavage of Beclin 1 resulted in abrogating the interaction between Bcl-2 with Beclin 1 , which could be blocked by z-VAD-fmk. Thus, our results suggest that the cleavage of Beclin 1 by caspase-3 may contribute to inactivate autophagy leading towards augmented apoptosis.
机译:自噬和细胞凋亡均是高度调节的生物学过程,在组织稳态,发育和疾病中起着至关重要的作用。自噬也被描述为死亡途径的机制,但是,自噬如何与细胞死亡联系的确切机制仍有待充分理解。 Beclin 1是自噬和细胞凋亡的双重调节器。在这项研究中,我们发现Beclin 1是caspase-3的底物,在位置124和149分别具有两个切割位点。此外,在星形孢菌素处理后,发生了自噬体形成,随后出现了凋亡的形态学标志。 Beclin 1的裂解产物减少了HeLa细胞和通过特异性shRNA稳定敲除Beclin 1的细胞的自噬并促进了细胞凋亡。此外,Beclin 1的裂解导致Bcl-2与Beclin 1之间的相互作用被消除,而z-VAD-fmk可能会阻止Bcl-2与Beclin 1的相互作用。因此,我们的结果表明,caspase-3对Beclin 1的切割可能有助于使自噬失活,从而导致凋亡增加。

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