首页> 外文期刊>Cell death and differentiation >Retinoic acid decreases targeting of p27 for degradation via an N-myc-dependent decrease in p27 phosphorylation and an N-myc-independent decrease in Skp2.
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Retinoic acid decreases targeting of p27 for degradation via an N-myc-dependent decrease in p27 phosphorylation and an N-myc-independent decrease in Skp2.

机译:视黄酸通过p27磷酸化的N-myc依赖性降低和Skp2的N-myc依赖性降低来降低p27的降解目标。

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摘要

Poor prognosis neuroblastoma (NB) tumors are marked by amplification and overexpression of N-myc. Retinoic acid (RA) decreases N-myc levels and induces cell cycle arrest in vitro and increases event-free survival in advanced stage NB patients. In this study, we investigated the mechanism(s) by which RA regulates cell cycle and how N-myc affects NB cell cycle progression. Constitutive N-myc overexpression stimulates increases in cyclin E-dependent kinase activity and decreases in p27 resulting in increased DNA synthesis. N-myc regulates p27 levels through an increase in targeting of p27 to the proteasome via cyclin E kinase-dependent phosphorylation of p27 and its ubiquitination. N-myc also stimulates an increase in proteasome activity. In RA-treated cells in which N-myc levels decline as p27 levels increase, degradation of p27 is also decreased. However, RA does not affect the activity of proteasome. The decrease in the degradation of p27 in RA-treated cells is due in part to a decrease in the N-myc stimulated phosphorylation of p27. However, RA also decreases Skp2 levels thus impairing the ability of p27 to be ubiquitinated. Thus, RA induces both N-myc-dependent and -independent mechanisms to minimize the degradation of p27 and arrest NB cell growth.Cell Death and Differentiation (2003) 10, 230-239. doi:10.1038/sj.cdd.4401125
机译:N-myc的扩增和过表达标志着预后不良的神经母细胞瘤(NB)肿瘤。维甲酸(RA)可以降低N-myc的水平,并在体外诱导细胞周期停滞,并提高晚期NB患者的无事件生存率。在这项研究中,我们研究了RA调节细胞周期以及N-myc如何影响NB细胞周期进程的机制。 N-myc组成型过表达刺激细胞周期蛋白E依赖性激酶活性增加,而p27减少导致DNA合成增加。 N-myc通过依赖于细胞周期蛋白E激酶的p27磷酸化及其泛素化作用,将p27靶向蛋白酶体,从而调节p27的水平。 N-myc也刺激蛋白酶体活性的增加。在N-myc水平随p27水平升高而下降的RA处理细胞中,p27的降解也降低了。但是,RA不会影响蛋白酶体的活性。 RA处理的细胞中p27降解的降低部分归因于N-myc刺激的p27磷酸化的降低。但是,RA还会降低Skp2水平,从而削弱p27泛素化的能力。因此,RA诱导N-myc依赖性和非依赖性机制以最小化p27的降解并阻止NB细胞生长。CellDeath and Differentiation(2003)10,230-239。 doi:10.1038 / sj.cdd.4401125

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