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基于流式细胞术的核膜跨膜蛋白筛选发现 NET4/Tmem53 参与应激依赖性细胞周期退出。

A flow cytometry-based screen of nuclear envelope transmembrane proteins identifies NET4/Tmem53 as involved in stress-dependent cell cycle withdrawal.

机构信息

The Wellcome Trust Centre for Cell Biology and Institute of Cell Biology, University of Edinburgh, Edinburgh, United Kingdom.

出版信息

PLoS One. 2011 Apr 14;6(4):e18762. doi: 10.1371/journal.pone.0018762.

Abstract

Disruption of cell cycle regulation is one mechanism proposed for how nuclear envelope protein mutation can cause disease. Thus far only a few nuclear envelope proteins have been tested/found to affect cell cycle progression: to identify others, 39 novel nuclear envelope transmembrane proteins were screened for their ability to alter flow cytometry cell cycle/DNA content profiles when exogenously expressed. Eight had notable effects with seven increasing and one decreasing the 4N:2N ratio. We subsequently focused on NET4/Tmem53 that lost its effects in p53(-/-) cells and retinoblastoma protein-deficient cells. NET4/TMEM53 knockdown by siRNA altered flow cytometry cell cycle/DNA content profiles in a similar way as overexpression. NET4/TMEM53 knockdown did not affect total retinoblastoma protein levels, unlike nuclear envelope-associated proteins Lamin A and LAP2α. However, a decrease in phosphorylated retinoblastoma protein was observed along with a doubling of p53 levels and a 7-fold increase in p21. Consequently cells withdrew from the cell cycle, which was confirmed in MRC5 cells by a drop in the percentage of cells expressing Ki-67 antigen and an increase in the number of cells stained for ß-galactosidase. The ß-galactosidase upregulation suggests that cells become prematurely senescent. Finally, the changes in retinoblastoma protein, p53, and p21 resulting from loss of NET4/Tmem53 were dependent upon active p38 MAP kinase. The finding that roughly a fifth of nuclear envelope transmembrane proteins screened yielded alterations in flow cytometry cell cycle/DNA content profiles suggests a much greater influence of the nuclear envelope on the cell cycle than is widely held.

摘要

细胞周期调控的破坏是核膜蛋白突变如何导致疾病的一种机制。到目前为止,只有少数核膜蛋白被测试/发现会影响细胞周期进程:为了鉴定其他核膜蛋白,筛选了 39 种新型核膜跨膜蛋白,以确定它们在外源表达时改变流式细胞术细胞周期/DNA 含量图谱的能力。其中 8 种具有显著影响,其中 7 种增加,1 种减少 4N:2N 比值。随后我们将重点放在 NET4/Tmem53 上,该蛋白在 p53(-/-)细胞和视网膜母细胞瘤蛋白缺陷细胞中失去作用。NET4/TMEM53 的 siRNA 敲低以类似于过表达的方式改变流式细胞术细胞周期/DNA 含量图谱。NET4/TMEM53 敲低不像核膜相关蛋白 Lamin A 和 LAP2α 那样影响总视网膜母细胞瘤蛋白水平。然而,观察到磷酸化视网膜母细胞瘤蛋白减少,同时 p53 水平增加两倍,p21 增加 7 倍。因此,细胞退出细胞周期,这在 MRC5 细胞中通过表达 Ki-67 抗原的细胞百分比下降和β-半乳糖苷酶染色的细胞数量增加得到证实。β-半乳糖苷酶的上调表明细胞过早衰老。最后,NET4/Tmem53 缺失导致的视网膜母细胞瘤蛋白、p53 和 p21 的变化依赖于活性 p38 MAP 激酶。筛选的核膜跨膜蛋白中有近五分之一改变流式细胞术细胞周期/DNA 含量图谱的发现表明,核膜对细胞周期的影响比普遍认为的要大得多。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/127d/3077400/f5942a420cd4/pone.0018762.g001.jpg

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