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Impairment of lysosomal integrity by B10 a glycosylated derivative of betulinic acid leads to lysosomal cell death and converts autophagy into a detrimental process

机译:B10(一种桦木酸的糖基化衍生物)对溶酶体完整性的损害导致溶酶体细胞死亡并将自噬转化为有害过程

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摘要

In this study, we report a novel mechanism of action for a cytotoxic derivative of betulinic acid (BA). B10 is a semi-synthetic glycosylated derivative of BA selected for its enhanced cytotoxic activity. Interestingly, although B10 induces apoptosis, caspase-3 downregulation incompletely prevents B10-induced cell death, Bcl-2 overexpression fails to protect cells and DNA fragmentation rates do not reflect cell death rates in contrast to cytoplasmic membrane permeabilization. These results implicate that apoptotic and non-apoptotic cell death coexist upon B10 treatment. Unexpectedly, we found that B10 induces autophagy and also abrogates the autophagic flux. B10 destabilizes lysosomes as shown by Lysotracker Red staining and by cathepsin Z and B release from lysosomes into the cytoplasm. Consistently, the cathepsin inhibitor Ca074Me significantly decreases B10-induced cell death, further supporting the fact that the release of lysosomal enzymes contributes to B10-triggered cell death. Downregulation of ATG7, ATG5 or BECN1 by RNAi significantly decreases caspase-3 activation, lysosomal permeabilization and cell death. Thus, by concomitant induction of autophagy and inhibition of the autophagic flux, B10 turns autophagy into a cell death mechanism. These findings have important implications for the therapeutic exploitation of BA derivatives, particularly in apoptosis-resistant cancers.
机译:在这项研究中,我们报告了一种新的作用机制,其作用为桦木酸(BA)的细胞毒性衍生物。 B10是BA的半合成糖基化衍生物,因其增强的细胞毒活性而被选择。有趣的是,尽管B10诱导细胞凋亡,但是caspase-3的下调不能完全阻止B10诱导的细胞死亡,而Bcl-2的过表达不能保护细胞,与细胞质膜通透性相比,DNA断裂率不能反映细胞的死亡率。这些结果暗示凋亡和非凋亡细胞死亡在B10治疗后并存。出乎意料的是,我们发现B10诱导自噬,也消除了自噬通量。如溶血球蛋白红染色和组织蛋白酶Z和B从溶酶体释放到细胞质中所示,B10使溶酶体不稳定。一致地,组织蛋白酶抑制剂Ca074Me显着降低了B10诱导的细胞死亡,进一步支持了溶酶体酶的释放导致B10触发的细胞死亡的事实。 RNAi对ATG7,ATG5或BECN1的下调显着降低了caspase-3激活,溶酶体通透性和细胞死亡。因此,通过伴随自噬的诱导和自噬通量的抑制,B10将自噬转变为细胞死亡机制。这些发现对BA衍生物的治疗开发具有重要意义,特别是在抗凋亡的癌症中。

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