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CRM1/Ran-Mediated Nuclear Export of p27Kip1 Involves a Nuclear Export Signal and Links p27 Export and Proteolysis

机译:CRM1 / Ran介导的p27Kip1核出口涉及核出口信号并链接p27出口和蛋白水解。

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摘要

We show that p27 localization is cell cycle regulated and we suggest that active CRM1/RanGTP-mediated nuclear export of p27 may be linked to cytoplasmic p27 proteolysis in early G1. p27 is nuclear in G0 and early G1 and appears transiently in the cytoplasm at the G1/S transition. Association of p27 with the exportin CRM1 was minimal in G0 and increased markedly during G1-to-S phase progression. Proteasome inhibition in mid-G1 did not impair nuclear import of p27, but led to accumulation of p27 in the cytoplasm, suggesting that export precedes degradation for at least part of the cellular p27 pool. p27-CRM1 binding and nuclear export were inhibited by S10A mutation but not by T187A mutation. A putative nuclear export sequence in p27 is identified whose mutation reduced p27-CRM1 interaction, nuclear export, and p27 degradation. Leptomycin B (LMB) did not inhibit p27-CRM1 binding, nor did it prevent p27 export in vitro or in heterokaryon assays. Prebinding of CRM1 to the HIV-1 Rev nuclear export sequence did not inhibit p27-CRM1 interaction, suggesting that p27 binds CRM1 at a non-LMB-sensitive motif. LMB increased total cellular p27 and may do so indirectly, through effects on other p27 regulatory proteins. These data suggest a model in which p27 undergoes active, CRM1-dependent nuclear export and cytoplasmic degradation in early G1. This would permit the incremental activation of cyclin E-Cdk2 leading to cyclin E-Cdk2-mediated T187 phosphorylation and p27 proteolysis in late G1 and S phase.
机译:我们表明p27本地化是细胞周期调节的,并且我们建议主动CRM1 / RanGTP介导的p27核出口可能与早期G1的细胞质p27蛋白水解有关。 p27在G0和G1早期是有核的,在G1 / S过渡时在细胞质中短暂出现。在G0中,p27与exportin CRM1的关联极少,在G1至S期的进展中显着增加。 G1中期的蛋白酶体抑制作用不会损害p27的核输入,但会导致p27在细胞质中蓄积,这表明至少部分细胞p27库的输出先于降解。 p27-CRM1的结合和核输出受S10A突变抑制,但不受T187A突变抑制。鉴定出p27中的推定核输出序列,其突变减少了p27-CRM1相互作用,核输出和p27降解。 Leptomycin B(LMB)不能抑制p27-CRM1结合,也不能在体外或异核体测定中阻止p27的输出。 CRM1与HIV-1 Rev核输出序列的预结合不会抑制p27-CRM1的相互作用,表明p27在非LMB敏感基序上结合CRM1。 LMB增加了细胞中的总p27,并且可能通过对其他p27调节蛋白的影响而间接增加。这些数据表明了一个模型,其中p27在早期G1中经历了主动的,依赖CRM1的核输出和细胞质降解。这将允许细胞周期蛋白E-Cdk2的增量激活,导致细胞周期蛋白E-Cdk2介导的T187磷酸化和G27和S期晚期的p27蛋白水解。

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