首页> 外文期刊>Biochemical and Biophysical Research Communications >Mutations of phosphorylation sites Ser10 and Thr187 of p27Kip1 abolish cytoplasmic redistribution but do not abrogate G0/1 phase arrest in the HepG2 cell line.
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Mutations of phosphorylation sites Ser10 and Thr187 of p27Kip1 abolish cytoplasmic redistribution but do not abrogate G0/1 phase arrest in the HepG2 cell line.

机译:p27Kip1的磷酸化位点Ser10和Thr187的突变消除了细胞质的重新分布,但没有消除HepG2细胞系中的G0 / 1期停滞。

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摘要

The cyclin-dependent kinase (CDK) inhibitor p27(Kip1) is an important regulator of cell cycle progression as it negatively regulates G(0/1) progression and plays a major role in controlling the cell cycle. The screening of the p27(Kip1) sequence identified many potential phosphorylation sites. Although Ser(10) and Thr(187) were shown to be important for p27(Kip1) function, the effects of a combined deletion of both sites on p27(Kip1) function are still unknown. To investigate the effects of the overexpression of exogenous p27(Kip1) protein lacking both the Ser(10) and Thr(187) sites on subcellular localization, cell cycle, and proliferation, a plasmid was constructed containing mutations of p27(Kip1) at Ser(10) and Thr(187) (S10A/T187A p27), and transfected into the HepG(2) cell line with Lipofectamine. Wild-type and mutant p27 plasmids S10A and T187A were transfected separately as control groups. As a result, the proliferation of HepG(2) cells was greatly inhibited and cell cycle was arrested in G(0/1) phase after exogenous p27(Kip1) double-mutant expression. All recombinant p27(Kip1) constructs were distributed in the nucleus after synchronization in G(0) phase by treatment with leptomycin B. The expressed wild-type and T187A p27(Kip1) proteins were translocated from the nucleus into cytoplasm when cells were exposed to 20% serum for 8 h, whereas the S10A p27(Kip1) and S10A/T187A p27(Kip1) proteins remained in the nucleus. FACS profiles and cell growth curves indicated that the Ser(10) and Thr(187) double mutant has no significant effect on the biological activities of cell cycle control and growth inhibition. Our results suggest that expression of the p27(Kip1) double-mutant abolishes its cytoplasmic redistribution but does not abrogate G(0/1) phase arrest in the HepG(2) cell line.
机译:细胞周期蛋白依赖性激酶(CDK)抑制剂p27(Kip1)是细胞周期进程的重要调节剂,因为它负调节G(0/1)进程并在控制细胞周期中起主要作用。 p27(Kip1)序列的筛选确定了许多潜在的磷酸化位点。尽管显示Ser(10)和Thr(187)对于p27(Kip1)功能很重要,但两个位点联合删除对p27(Kip1)功能的影响仍然未知。为了研究缺少Ser(10)和Thr(187)位点的外源p27(Kip1)蛋白过表达对亚细胞定位,细胞周期和增殖的影响,构建了一个包含p27(Kip1)突变的质粒(10)和Thr(187)(S10A / T187A p27),并用Lipofectamine转染到HepG(2)细胞系中。将野生型和突变型p27质粒S10A和T187A分别转染为对照组。结果,外源p27(Kip1)双突变表达后,HepG(2)细胞的增殖被大大抑制,细胞周期被阻滞在G(0/1)期。通过使用瘦霉素B处理,所有重组p27(Kip1)构建体在G(0)相同步后均分布在细胞核中。当细胞暴露于细胞中时,表达的野生型和T187A p27(Kip1)蛋白从细胞核转移到细胞质中。 20%血清持续8 h,而S10A p27(Kip1)和S10A / T187A p27(Kip1)蛋白保留在细胞核中。 FACS配置文件和细胞生长曲线表明,Ser(10)和Thr(187)双重突变体对细胞周期控制和生长抑制的生物学活性没有显着影响。我们的结果表明,p27(Kip1)双突变体的表达消除了其细胞质的重新分布,但没有消除HepG(2)细胞系中的G(0/1)阶段停滞。

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