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The thiazole derivative CPTH6 impairs autophagy

机译:噻唑衍生物CPTH6损害自噬

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We have previously demonstrated that the thiazole derivative 3-methylcyclopentylidene-[4-(4′-chlorophenyl)thiazol-2-yl]hydrazone (CPTH6) induces apoptosis and cell cycle arrest in human leukemia cells. The aim of this study was to evaluate whether CPTH6 is able to affect autophagy. By using several human tumor cell lines with different origins we demonstrated that CPTH6 treatment induced, in a dose-dependent manner, a significant increase in autophagic features, as imaged by electron microscopy, immunoblotting analysis of membrane-bound form of microtubule-associated protein 1 light chain 3 (LC3B-II) levels and by appearance of typical LC3B-II-associated autophagosomal puncta . To gain insights into the molecular mechanisms of elevated markers of autophagy induced by CPTH6 treatment, we silenced the expression of several proteins acting at different steps of autophagy. We found that the effect of CPTH6 on autophagy developed through a noncanonical mechanism that did not require beclin-1-dependent nucleation, but involved Atg-7-mediated elongation of autophagosomal membranes. Strikingly, a combined treatment of CPTH6 with late-stage autophagy inhibitors, such as chloroquine and bafilomycin A1, demonstrates that under basal condition CPTH6 reduces autophagosome turnover through an impairment of their degradation pathway, rather than enhancing autophagosome formation, as confirmed by immunofluorescence experiments. According to these results, CPTH6-induced enhancement of autophagy substrate p62 and NBR1 protein levels confirms a blockage of autophagic cargo degradation. In addition, CPTH6 inhibited autophagosome maturation and compounds having high structural similarities with CPTH6 produced similar effects on the autophagic pathway. Finally, the evidence that CPTH6 treatment decreased α -tubulin acetylation and failed to increase autophagic markers in cells in which acetyltransferase ATAT1 expression was silenced indicates a possible role of α -tubulin acetylation in CPTH6-induced alteration in autophagy. Overall, CPTH6 could be a valuable agent for the treatment of cancer and should be further studied as a possible antineoplastic agent.
机译:我们以前已经证明,噻唑衍生物3-甲基环亚戊基-[4-(4'-氯苯基)噻唑-2-基] hydr(CPTH6)诱导人白血病细胞凋亡和细胞周期停滞。这项研究的目的是评估CPTH6是否能够影响自噬。通过使用几种不同来源的人类肿瘤细胞系,我们证明了CPTH6处理以剂量依赖性方式诱导自噬特征的显着增加,如电子显微镜所成像,微管结合蛋白1的膜结合形式的免疫印迹分析轻链3(LC3B-II)水平,并通过典型的LC3B-II相关的自噬小点出现。为了深入了解CPTH6处理诱导的自噬标记物升高的分子机制,我们沉默了几种作用于自噬步骤的蛋白质的表达。我们发现CPTH6对自噬的影响是通过非经典机制发展的,该机制不需要beclin-1依赖性成核,但涉及Atg-7介导的自噬体膜伸长。令人惊讶的是,将CPTH6与晚期自噬抑制剂(例如氯喹和bafilomycin A1)联合处理表明,在碱性条件下,CPTH6通过破坏其降解途径而降低了自噬体的转化,而不是增强自噬体的形成,这已通过免疫荧光实验证实。根据这些结果,CPTH6诱导的自噬底物p62和NBR1蛋白水平的增强证实了自噬货物降解的阻滞。此外,CPTH6抑制了自噬体的成熟,与CPTH6具有高度结构相似性的化合物对自噬途径产生了相似的作用。最后,CPTH6处理可降低乙酰转移酶ATAT1表达沉默的细胞中α-微管蛋白乙酰化而不能增加自噬标记的证据表明α-微管蛋白乙酰化在CPTH6诱导的自噬改变中的可能作用。总体而言,CPTH6可能是治疗癌症的重要药物,应作为可能的抗肿瘤药物进行进一步研究。

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