首页> 外文期刊>Oncogene >Retinoic acid stabilizes p27Kip1 in EBV-immortalized lymphoblastoid B cell lines through enhanced proteasome-dependent degradation of the p45Skp2 and Cks1 proteins
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Retinoic acid stabilizes p27Kip1 in EBV-immortalized lymphoblastoid B cell lines through enhanced proteasome-dependent degradation of the p45Skp2 and Cks1 proteins

机译:维甲酸通过增强蛋白酶体依赖性降解p45Skp2和Cks1蛋白来稳定EBV永生化淋巴母细胞B细胞系中的p27Kip1

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Retinoic acid (RA) arrests the growth of EBV-immortalized lymphoblastoid B cell lines (LCLs) by upregulating the cyclin-dependent kinase inhibitor p27Kip1. Here, we show that in LCLs, RA inhibits ubiquitination and proteasome-dependent degradation of p27Kip1, a phenomenon that is associated with downregulation of Thr187 phosphorylation of the protein, whereas the phosphorylation on Ser10 is unaffected. Furthermore, we demonstrate that RA downregulates the expression of the p45Skp2 and Cks1 proteins, two essential components of the SCFSkp2 ubiquitin ligase complex that target p27Kip1 for degradation. Downregulation of p45Skp2 and Cks1 occurs before the onset of growth arrest and is due to enhanced proteasome-mediated proteolysis of these proteins. Moreover, overexpression of p45Skp2 in DG75 cells prevents p27Kip1 protein accumulation and promotes resistance to the antiproliferative effects of RA. Treatment with Leptomycin B (LMB) blocked the translocation of p27Kip1 to the cytoplasm and prevented its degradation, indicating that CRM1-dependent nuclear export is required for p27Kip1 degradation. The shuttle protein p38Jab1, however, does not accumulate in the nucleus upon LMB treatment, nor does it interact with p27Kip1. Conversely, p45Skp2 is associated with p27Kip1 both in the nucleus and in the cytoplasm, accumulating within the nuclei after exposure to LMB and co-localizing with the exportin CRM1, suggesting a possible involvement of p45Skp2 in CRM1-dependent nuclear export of p27Kip1. These results indicate that downregulation of p45Skp2 is a key element underlying RA-induced p27Kip1 stabilization in B cells, resulting in an impaired targeting of the protein to the ubiquitin–proteasome pathway and probably contributing to the nuclear accumulation of p27Kip1.
机译:维甲酸(RA)通过上调细胞周期蛋白依赖性激酶抑制剂p27Kip1阻止EBV永生化淋巴母细胞B细胞系(LCL)的生长。在这里,我们显示,在LCL中,RA抑制p27Kip1的泛素化和蛋白酶体依赖性降解,这种现象与该蛋白Thr187磷酸化的下调相关,而Ser10上的磷酸化不受影响。此外,我们证明RA下调p45Skp2和Cks1蛋白的表达,这两个蛋白是SCFSkp2泛素连接酶复合物的两个必不可少的成分,它们靶向p27Kip1进行降解。 p45Skp2和Cks1的下调发生在生长停滞开始之前,这是由于这些蛋白的蛋白酶体介导的蛋白水解作用增强。此外,在DG75细胞中过表达p45Skp2可防止p27Kip1蛋白积聚,并增强对RA抗增殖作用的抵抗力。 Leptomycin B(LMB)的治疗阻止了p27Kip1向细胞质的转运并阻止了其降解,表明p27Kip1降解需要CRM1依赖的核输出。但是,穿梭蛋白p38Jab1在LMB处理后不会积聚在细胞核中,也不会与p27Kip1相互作用。相反,p45Skp2在细胞核和细胞质中均与p27Kip1相关,在暴露于LMB后在核内蓄积并与exportin CRM1共同定位,表明p45Skp2可能参与了依赖CRM1的p27Kip1核输出。这些结果表明,p45Skp2的下调是RA诱导B细胞中p27Kip1稳定的基础,这导致该蛋白靶向泛素-蛋白酶体途径的功能受损,并可能促进p27Kip1的核积累。

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