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首页> 外文期刊>BMC Cell Biology >Knock-down of methyl CpG-binding protein 2 (MeCP2) causes alterations in cell proliferation and nuclear lamins expression in mammalian cells
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Knock-down of methyl CpG-binding protein 2 (MeCP2) causes alterations in cell proliferation and nuclear lamins expression in mammalian cells

机译:击倒甲基CpG结合蛋白2(MeCP2)导致哺乳动物细胞中细胞增殖和核纤层蛋白表达的改变

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Background MeCP2 (CpG-binding protein 2) is a nuclear multifunctional protein involved in several cellular processes, like large-scale chromatin reorganization and architecture, and transcriptional regulation. In recent years, a non-neuronal role for MeCP2 has emerged in cell growth and proliferation. Mutations in the MeCP2 gene have been reported to determine growth disadvantages in cultured lymphocyte cells, and its functional ablation suppresses cell growth in glial cells and proliferation in mesenchymal stem cells and prostate cancer cells. MeCP2 interacts with lamin B receptor (LBR) and with Heterochromatin Protein 1 (HP1) at the nuclear envelope (NE), suggesting that it could be part of complexes involved in attracting heterochromatin at the nuclear periphery and in mediating gene silencing. The nuclear lamins, major components of the lamina, have a role in maintaining NE integrity, in orchestrating mitosis, in DNA replication and transcription, in regulation of mitosis and apoptosis and in providing anchoring sites for chromatin domains. In this work, we inferred that MeCP2 might have a role in nuclear envelope stability, thereby affecting the proliferation pattern of highly proliferating systems. Results By performing knock-down (KD) of MeCP2 in normal murine (NIH-3?T3) and in human prostate transformed cells (PC-3 and LNCaP), we observed a strong proliferation decrease and a defect in the cell cycle progression, with accumulation of cells in S/G2M, without triggering a strong apoptotic and senescent phenotype. In these cells, KD of MeCP2 evidenced a considerable decrease of the levels of lamin A, lamin C, lamin B1 and LBR proteins. Moreover, by confocal analysis we confirmed the reduction of lamin A levels, but we also observed an alteration in the shape of the nuclear lamina and an irregular nuclear rim. Conclusions Our results that indicate reduced levels of NE components, are consistent with a hypothesis that the deficiency of MeCP2 might cause the lack of a key “bridge” function that links the peripheral heterochromatin to the NE, thereby causing an incorrect assembly of the NE itself, together with a decreased cell proliferation and viability.
机译:背景MeCP2(CpG结合蛋白2)是一种涉及多种细胞过程的核多功能蛋白,例如大规模的染色质重组和构建以及转录调控。近年来,MeCP2的非神经元作用已经出现在细胞生长和增殖中。据报道,MeCP2基因突变确定了培养的淋巴细胞的生长不利,其功能性消融抑制了神经胶质细胞中的细胞生长以及间充质干细胞和前列腺癌细胞的增殖。 MeCP2与核纤层蛋白B受体(LBR)和核包膜(NE)的异染色质蛋白1(HP1)相互作用,这表明它可能是参与在核外围吸引异染色质并介导基因沉默的复合物的一部分。核纤层蛋白是核纤层的主要成分,在维持NE完整性,协调有丝分裂,DNA复制和转录,调节有丝分裂和凋亡以及为染色质结构域提供锚定位点方面发挥作用。在这项工作中,我们推断MeCP2可能在核包膜的稳定性中起作用,从而影响高度增殖系统的扩散模式。结果通过在正常小鼠(NIH-3?T3)和人前列腺转化细胞(PC-3和LNCaP)中进行MeCP2的敲除(KD),我们观察到了强烈的增殖减少和细胞周期进程的缺陷,细胞在S / G 2 M中积累,而不会触发强烈的凋亡和衰老表型。在这些细胞中,MeCP2的KD证明了Lamin A,Lamin C,Lamin B1和LBR蛋白水平显着下降。此外,通过共聚焦分析,我们确认了层粘连蛋白A水平的降低,但我们还观察到了核层的形状和不规则核边缘的变化。结论我们的结果表明NE组分水平降低,这与以下假设一致:MeCP2的缺乏可能会导致缺少将外围异染色质与NE连接起来的关键“桥”功能,从而导致NE自身的错误组装,以及细胞增殖和活力降低。

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