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Spatiotemporal Mislocalization of Nuclear Membrane-Associated Proteins in γ-Irradiation-Induced Senescent Cells

机译:γ射线诱导的衰老细胞中核膜相关蛋白的时空错位

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摘要

Cellular senescence, induced by genotoxic or replication stress, is accompanied by defects in nuclear morphology and nuclear membrane-heterochromatin disruption. In this work, we analyzed cytological and molecular changes in the linker of nucleoskeleton and cytoskeleton (LINC) complex proteins in senescence triggered by γ-irradiation. We used human mammary carcinoma and osteosarcoma cell lines, both original and shRNA knockdown clones targeting lamin B receptor (LBR) and leading to LBR and lamin B (LB1) reduction. The expression status and integrity of LINC complex proteins (nesprin-1, SUN1, SUN2), lamin A/C, and emerin were analyzed by immunodetection using confocal microscopy and Western blot. The results show frequent mislocalization of these proteins from the nuclear membrane to cytoplasm and micronuclei and, in some cases, their fragmentation and amplification. The timing of these changes clearly preceded the onset of senescence. The LBR deficiency triggered neither senescence nor changes in the LINC protein distribution before irradiation. However, the cytological changes following irradiation were more pronounced in shRNA knockdown cells compared to original cell lines. We conclude that mislocalization of LINC complex proteins is a significant characteristic of cellular senescence phenotypes and may influence complex events at the nuclear membrane, including trafficking and heterochromatin attachment.
机译:由基因毒性或复制应激诱导的细胞衰老伴随着核形态和核膜-异染色质破坏的缺陷。在这项工作中,我们分析了由γ射线引发的衰老中核骨架和细胞骨架(LINC)复杂蛋白连接子的细胞学和分子变化。我们使用了人类乳腺癌和骨肉瘤细胞系,既靶向针对lamin B受体(LBR),又导致LBR和lamin B(LB1)减少的原始和shRNA敲低克隆。使用共聚焦显微镜和蛋白质印迹法通过免疫检测分析了LINC复合蛋白(nesprin-1,SUN1,SUN2),层粘连蛋白A / C和Emerin的表达状态和完整性。结果表明,这些蛋白质从核膜到细胞质和微核的频繁错位,在某些情况下,它们会断裂和扩增。这些变化的时间显然早于衰老开始。 LBR缺乏在照射前既不会引起衰老也不会引起LINC蛋白分布的变化。然而,与原始细胞系相比,shRNA击倒细胞中辐射后的细胞学变化更为明显。我们得出结论,LINC复杂蛋白的错误定位是细胞衰老表型的重要特征,并且可能影响核膜上的复杂事件,包括运输和异染色质附着。

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