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Heat shock protein 90-mediated inactivation of nuclear factor-κB switches autophagy to apoptosis through becn1 transcriptional inhibition in selenite-induced NB4 cells

机译:通过亚硒酸钠诱导的NB4细胞中becn1转录抑制作用,热休克蛋白90介导的核因子-κB失活使自噬转变为凋亡。

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Autophagy can protect cells while also contributing to cell damage, but the precise interplay between apoptosis and autophagy and the contribution of autophagy to cell death are still not clear. Previous studies have shown that supranutritional doses of sodium selenite promote apoptosis in human leukemia NB4 cells. Here, we report that selenite treatment triggers opposite patterns of autophagy in the NB4, HL60, and Jurkat leukemia cell lines during apoptosis and provide evidence that the suppressive effect of selenite on autophagy in NB4 cells is due to the decreased expression of the chaperone protein Hsp90 (heat shock protein 90), suggesting a novel regulatory function of Hsp90 in apoptosis and autophagy. Excessive or insufficient expression indicates that Hsp90 protects NB4 cells from selenite-induced apoptosis, and selenite-induced decreases in the expression of Hsp90, especially in NB4 cells, inhibit the activities of the IκB kinaseuclear factor-κB (IKK/NF-κB) signaling pathway, leading to less nuclear translocation and inactivation of NF-κB and the subsequent weak binding of the becn1 promoter, which facilitates the transition from autophagy to apoptosis. Taken together, our observations provide novel insights into the mechanisms underlying the balance between apoptosis and autophagy, and we also identified Hsp90-NF-κB-Beclin1 as a potential biological pathway for signaling the switch from autophagy to apoptosis in selenite-treated NB4 cells.
机译:自噬可以在保护细胞的同时也造成细胞损伤,但是凋亡与自噬之间的精确相互作用以及自噬对细胞死亡的影响仍然不清楚。先前的研究表明,超剂量的亚硒酸钠可促进人白血病NB4细胞凋亡。在这里,我们报道亚硒酸盐治疗在凋亡期间触发NB4,HL60和Jurkat白血病细胞系中相反的自噬模式,并提供证据表明亚硒酸盐对NB4细胞自噬的抑制作用是由于伴侣蛋白Hsp90的表达降低(热激蛋白90),提示Hsp90在凋亡和自噬中具有新的调节功能。表达过多或不足表明Hsp90保护NB4细胞免受亚硒酸盐诱导的细胞凋亡,并且亚硒酸盐诱导的Hsp90表达减少,特别是在NB4细胞中,抑制IκB激酶/核因子-κB(IKK /NF-κB )信号通路,导致较少的核易位和NF-κB失活,以及随后的becn1启动子弱结合,从而促进自噬向凋亡的转变。综上所述,我们的观察结果为细胞凋亡与自噬之间平衡的潜在机制提供了新颖的见解,并且我们还将Hsp90-NF-κB-Beclin1鉴定为信号传导的潜在生物学途径,该信号途径是亚硒酸盐处理的NB4细胞从自噬转变为凋亡的信号。

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