首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Allyl Isothiocyanate Arrests Cancer Cells in Mitosis and Mitotic Arrest in Turn Leads to Apoptosis via Bcl-2 Protein Phosphorylation
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Allyl Isothiocyanate Arrests Cancer Cells in Mitosis and Mitotic Arrest in Turn Leads to Apoptosis via Bcl-2 Protein Phosphorylation

机译:异硫氰酸烯丙酯在有丝分裂中逮捕癌细胞而有丝分裂被捕又通过Bcl-2蛋白磷酸化导致细胞凋亡。

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摘要

Allyl isothiocyanate (AITC) occurs in many commonly consumed cruciferous vegetables and exhibits significant anti-cancer activities. Available data suggest that it is particularly promising for bladder cancer prevention and/or treatment. Here, we show that AITC arrests human bladder cancer cells in mitosis and also induces apoptosis. Mitotic arrest by AITC was associated with increased ubiquitination and degradation of α- and β-tubulin. AITC directly binds to multiple cysteine residues of the tubulins. AITC induced mitochondrion-mediated apoptosis, as shown by cytochrome c release from mitochondria to cytoplasm, activation of caspase-9 and caspase-3, and formation of TUNEL-positive cells. Inhibition of caspase-9 blocked AITC-induced apoptosis. Moreover, we found that apoptosis induction by AITC depended entirely on mitotic arrest and was mediated via Bcl-2 phosphorylation at Ser-70. Pre-arresting cells in G1 phase by hydroxyurea abrogated both AITC-induced mitotic arrest and Bcl-2 phosphorylation. Overexpression of a Bcl-2 mutant prevented AITC from inducing apoptosis. We further showed that AITC-induced Bcl-2 phosphorylation was caused by c-Jun N-terminal kinase (JNK), and AITC activates JNK. Taken together, this study has revealed a novel anticancer mechanism of a phytochemical that is commonly present in human diet.
机译:异硫氰酸烯丙酯(AITC)存在于许多常见的十字花科蔬菜中,并具有显着的抗癌活性。现有数据表明,它对于膀胱癌的预防和/或治疗特别有希望。在这里,我们显示AITC可以在有丝分裂中逮捕人类膀胱癌细胞,并诱导细胞凋亡。 AITC引起的有丝分裂停滞与α-和β-微管蛋白的泛素化增加和降解有关。 AITC直接与微管蛋白的多个半胱氨酸残基结合。 AITC诱导线粒体介导的凋亡,如细胞色素c从线粒体释放到细胞质,激活caspase-9和caspase-3以及形成TUNEL阳性细胞所示。抑制caspase-9可阻止AITC诱导的细胞凋亡。此外,我们发现AITC诱导的细胞凋亡完全取决于有丝分裂阻滞,并通过Ser-70处的Bcl-2磷酸化介导。通过羟基脲使处于G1期的预阻滞细胞消除了AITC诱导的有丝分裂阻滞和Bcl-2磷酸化。 Bcl-2突变体的过度表达阻止AITC诱导细胞凋亡。我们进一步表明AITC诱导的Bcl-2磷酸化是由c-Jun N端激酶(JNK)引起的,而AITC激活JNK。综上所述,这项研究揭示了人类饮食中常见的一种植物化学物质的新型抗癌机制。

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