首页> 外文期刊>Cellular & molecular biology letters. >Pharmacological inhibition of GSK3 attenuates DNA damage-induced apoptosis via reduction of p53 mitochondrial translocation and Bax oligomerization in neuroblastoma SH-SY5Y CELLS
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Pharmacological inhibition of GSK3 attenuates DNA damage-induced apoptosis via reduction of p53 mitochondrial translocation and Bax oligomerization in neuroblastoma SH-SY5Y CELLS

机译:GSK3的药理抑制作用通过减少神经母细胞瘤SH-SY5Y细胞中p53线粒体易位和Bax寡聚化来减弱DNA损伤诱导的凋亡。

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Glycogen synthase kinase-3 (GSK3) and p53 play crucial roles in the mitochondrial apoptotic pathway and are known to interact in the nucleus. However, it is not known if GSK3 has a regulatory role in the mitochondrial translocation of p53 that participates in apoptotic signaling following DNA damage. In this study, we demonstrated that lithium and SB216763, which are pharmacological inhibitors of GSK3, attenuated p53 accumulation and caspase-3 activation, as shown by PARP cleavage induced by the DNA-damaging agents doxorubicin, etoposide and camptothecin. Furthermore, each of these agents induced translocation of p53 to the mitochondria and activated the mitochondrial pathway of apoptosis, as evidenced by the release of cytochrome C from the mitochondria. Both mitochondrial translocation of p53 and mitochondrial release of cytochrome C were attenuated by inhibition of GSK3, indicating that GSK3 promotes the DNA damage-induced mitochondrial translocation of p53 and the mitochondrial apoptosis pathway. Interestingly, the regulation of p53 mitochondrial translocation by GSK3 was only evident with wild-type p53, not with mutated p53. GSK3 inhibition also reduced the phosphorylation of wild-type p53 at serine 33, which is induced by doxorubicin, etoposide and camptothecin in the mitochondria. Moreover, inhibition of GSK3 reduced etoposide-induced association of p53 with Bcl2 and Bax oligomerization. These findings show that GSK3 promotes the mitochondrial translocation of p53, enabling its interaction with Bcl2 to allow Bax oligomerization and the subsequent release of cytochrome C. This leads to caspase activation in the mitochondrial pathway of intrinsic apoptotic signaling.
机译:糖原合酶激酶3(GSK3)和p53在线粒体凋亡途径中起关键作用,并已知在细胞核中相互作用。但是,尚不清楚GSK3是否在参与DNA损伤后凋亡信号转导的p53的线粒体易位中起调节作用。在这项研究中,我们证明了作为GSK3的药理抑制剂的锂和SB216763减弱了p53的积累和caspase-3的活化,这是由DNA破坏剂阿霉素,依托泊苷和喜树碱诱导的PARP裂解所显示的。此外,这些试剂中的每一种都诱导p53易位到线粒体并激活线粒体凋亡的途径,这可通过线粒体中细胞色素C的释放来证明。 p53的线粒体易位和细胞色素C的线粒体释放都被GSK3抑制所减弱,表明GSK3促进了DNA损伤诱导的p53的线粒体易位和线粒体凋亡途径。有趣的是,GSK3对p53线粒体易位的调控仅在野生型p53上明显,而在突变p53上不明显。 GSK3抑制作用还降低了线粒体中阿霉素,依托泊苷和喜树碱诱导的丝氨酸33上野生型p53的磷酸化。此外,抑制GSK3减少了依托泊苷诱导的p53与Bcl2和Bax寡聚的缔合。这些发现表明,GSK3促进p53的线粒体易位,使其与Bcl2相互作用以允许Bax寡聚并随后释放细胞色素C。这导致内在凋亡信号线粒体途径中的半胱天冬酶活化。

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