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Sulforaphane-cysteine downregulates CDK4 /CDK6 and inhibits tubulin polymerization contributing to cell cycle arrest and apoptosis in human glioblastoma cells

机译:亚氟甲烷 - 半胱氨酸下调CDK4 / CDK6抑制含有细胞周期停滞和人胶质母细胞瘤细胞细胞凋亡的管蛋白聚合

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摘要

Here we demonstrated that sulforaphane-cysteine (SFN-Cys) regulated cell cycle-related protein expressions in G0/G1 and G2/M phases of U87MG cells via High Performance Liquid Chromatography-Mass Spectrometry/Mass Spectrometry (HPLC-MS/MS) and proteomics analysis. Further, mRNA products of CDK4, CDK6 and α-tubulin were significantly higher in glioblastoma than those in normal tissues, and these results were significantly correlated to pathological grades and clinical prognosis via analyzing TCGA and CGGA databases. Furthermore, Western blot showed that SFN-Cys downregulated CDK4, CDK6 and p-Rb in a dose-dependent manner and these results were reversed by p-ERK1/2 blocker PD98059 in U87MG and U373MG cells. The reductions of CDK4, CDK6 and p-Rb were reversed by proteasome inhibitor MG132; similarly, the upregulation of 26S proteasome by SFN-Cys was reversed by PD98059. Interestingly, SFN-Cys decreased CDK4 and CDK6 by phosphorylated ERK1/2-caused proteasomal degradation resulting in decreased Rb phosphorylation contributing to cell cycle arrest in G0/G1 phase. Besides, Western blot showed that SFN-Cys downregulated α-tubulin resulting in microtubule disruption and aggregation, and cell cycle arrest in G2/M phase and apoptosis. These results might help us understand the molecular etiology of glioblastoma progression to establish brand-new anti-cancer therapies.
机译:在这里,我们证明了通过高效液相色谱 - 质谱/质谱(HPLC-MS / MS)和嗜合氟化铝 - 半胱氨酸(SFN-CYS)在U87MG细胞的G0 / G1和G2 / M相中调节细胞周期相关蛋白表达。蛋白质组学分析。此外,胶质母细胞瘤的CDK4,CDK6和α-微管蛋白的mRNA产物显着高于正常组织中的产物,并且通过分析TCGA和CGGA数据库,这些结果与病态成绩和临床预后显着相关。此外,Western印迹显示SFN-Cys以剂量依赖性方式下调CDK4,CDK6和P-RB,并且这些结果在U87MG和U373MG细胞中通过P-ERK1 / 2阻断剂PD98059反转。 CDK4,CDK6和P-RB的降低通过蛋白酶体抑制剂MG132反转;类似地,SFN-CYS的26s蛋白酶的上调通过PD98059反转。有趣的是,SFN-CYS通过磷酸化的ERK1 / 2引起的蛋白酶体降解降低CDK4和CDK6,导致RB磷酸化降低,导致G0 / G1相中的细胞周期停滞。此外,Western印迹表明,SFN-Cys下调了α-管蛋白,导致微管破坏和聚集,以及G2 / M期和细胞凋亡的细胞周期停滞。这些结果可能有助于我们了解胶质母细胞瘤进展的分子病因,以建立全新的抗癌疗法。

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