Kurata K, Yanagisawa R, Ohira M, Kitagawa M, Nakagawara A, Kamijo T
Department of Pediatrics, Shinshu University School of Medicine, Matsumoto, Nagano, Japan.
Oncogene. 2008 Jan 31;27(6):741-54. doi: 10.1038/sj.onc.1210672. Epub 2007 Aug 20.
In this study, we employed a panel of cell lines to determine whether p53-dependent cell death in neuroblastoma (NB) cells is caused by apoptotic cellular function, and we further studied the molecular mechanism of apoptosis induced via the p53-dependent pathway. We obtained evidence that a type of p53-dependent stress, doxorubicin (Doxo) administration, causes accumulation of p53 in the nucleus of NB cells and phosphorylation of several serine residues in both Doxo-sensitive and -resistant cell lines. Upregulation of p53-downstream molecules in cells and upregulation of Noxa in the mitochondrial fraction were observed only in Doxo-sensitive NB cells. Significance of Noxa in the Doxo-induced NB cell death was confirmed by Noxa-knockdown experiments. Mitochondrial dysfunction, including cytochrome-c release and membrane potential disregulation, occurred and resulted in the activation of the intrinsic caspase pathway. However, in the Doxo-resistant cells, the accumulation in the nucleus and phosphorylation of p53 did not induce p53-downstream p21(Cip1/Waf1) expression and the Noxa upregulation, resulting in the retention of the mitochondrial homeostasis. Taken together, these findings indicate that the p53 pathway seems to play a crucial role in NB cell death by Noxa regulation in mitochondria, and inhibition of the induction of p53-downstream effectors may regulate drug resistance of NB cells.
在本研究中,我们使用了一组细胞系来确定神经母细胞瘤(NB)细胞中p53依赖性细胞死亡是否由凋亡细胞功能引起,并进一步研究了通过p53依赖性途径诱导凋亡的分子机制。我们获得的证据表明,一种p53依赖性应激,即给予阿霉素(Doxo),会导致NB细胞核中p53的积累以及在Doxo敏感和耐药细胞系中几个丝氨酸残基的磷酸化。仅在Doxo敏感的NB细胞中观察到细胞中p53下游分子的上调以及线粒体部分中Noxa的上调。通过Noxa敲低实验证实了Noxa在Doxo诱导的NB细胞死亡中的重要性。发生了线粒体功能障碍,包括细胞色素c释放和膜电位失调,并导致内源性半胱天冬酶途径的激活。然而,在Doxo耐药细胞中,p53在细胞核中的积累和磷酸化并未诱导p53下游的p21(Cip1/Waf1)表达和Noxa上调,从而导致线粒体稳态的维持。综上所述,这些发现表明p53途径似乎通过线粒体中Noxa的调节在NB细胞死亡中起关键作用,并且抑制p53下游效应器的诱导可能调节NB细胞的耐药性。