mouse embryonic fibroblast cells

  • 文章类型: Journal Article
    以前的研究报告说,一个温和的,非蛋白质变性,发热样温度升高可诱导哺乳动物细胞的未折叠蛋白反应(UPR)。我们的dSTORM超分辨率显微镜实验表明,UPR的主调节器,IRE1(需要肌醇的酶1)蛋白,在轻度热应激下,由于人骨肉瘤细胞系(U2OS)中的UPR激活而成簇。使用ER热黄色,针对内质网(ER)的温度敏感荧光探针,我们在小鼠胚胎成纤维细胞(MEF)细胞中检测到显着的细胞内产热。温度至少比外部环境(40°C)高8°C,导致与先前描述的线粒体相似的异常高的ER温度。MEF细胞ER中轻度热诱导的产热可能是由于Ca2/ATPase(SERCA)泵的解偶联。高ER温度在MEF细胞中引发了明显的胞浆热休克反应,在不存在ER产热和SERCA泵解偶联的U2OS细胞中,这一比例显着降低。我们的结果表明,根据固有的细胞特性,轻度高热诱导的细胞内产热定义了细胞反应机制并决定了高热应激的结果。
    Previous studies reported that a mild, non-protein-denaturing, fever-like temperature increase induced the unfolded protein response (UPR) in mammalian cells. Our dSTORM super-resolution microscopy experiments revealed that the master regulator of the UPR, the IRE1 (inositol-requiring enzyme 1) protein, is clustered as a result of UPR activation in a human osteosarcoma cell line (U2OS) upon mild heat stress. Using ER thermo yellow, a temperature-sensitive fluorescent probe targeted to the endoplasmic reticulum (ER), we detected significant intracellular thermogenesis in mouse embryonic fibroblast (MEF) cells. Temperatures reached at least 8 °C higher than the external environment (40 °C), resulting in exceptionally high ER temperatures similar to those previously described for mitochondria. Mild heat-induced thermogenesis in the ER of MEF cells was likely due to the uncoupling of the Ca2+/ATPase (SERCA) pump. The high ER temperatures initiated a pronounced cytosolic heat-shock response in MEF cells, which was significantly lower in U2OS cells in which both the ER thermogenesis and SERCA pump uncoupling were absent. Our results suggest that depending on intrinsic cellular properties, mild hyperthermia-induced intracellular thermogenesis defines the cellular response mechanism and determines the outcome of hyperthermic stress.
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  • 文章类型: Journal Article
    Fas介导的细胞凋亡是许多生理和病理细胞过程的主要参与者。Fas调节的免疫调节表现出与免疫疾病的发作或发展有关的有益或有害作用。细胞凋亡的改变可能导致与年龄相关的变化。然而,细胞凋亡在衰老过程中的作用仍然不明确。在这里,我们证明了Fas信号介导的年轻小鼠胚胎成纤维细胞(MEF)细胞的过早衰老。激动剂Jo-2激活的Fas信号导致年轻和老年MEF衰老下降。早衰诱导衰老标记的早期激活,包括SA-β-半乳糖苷酶(SA-β-gal)细胞百分比的增加,p53磷酸化的诱导,在不存在Fas的情况下,p16和p21蛋白的表达增强以及IL-6促炎细胞因子的升高。缺乏Fas的MEF中活性氧(ROS)的产生增加与线粒体功能失调有关。Further,我们确定已知的ROS清除剂NAC(N-乙酰-1-半胱氨酸)可以逆转在不存在Fas的情况下过早衰老的过程。因此,这项研究表明Fas在控制细胞衰老中的新作用。
    Fas-mediated apoptosis is a major player of many physiological and pathological cellular processes. Fas-regulated immune regulation exhibits either the beneficial or the harmful effects which is associated with the onset or development of immune disorders. Alterations in apoptosis may contribute to age-associated changes. However, the role of apoptosis in the ageing process remains ambiguous. Here we demonstrated Fas signaling-mediated premature senescence in young mouse embryonic fibroblast (MEF) cells. Activated Fas signaling by agonist Jo-2 resulted in declined senescence in young and aged MEFs. Premature senescence induced the early activation of senescence markers, including the increase in the percentage of SA-β-galactosidase (SA-β-gal) cells, the induction of p53 phosphorylation, and the enhanced expression of p16 and p21 protein and elevated IL-6 pro-inflammatory cytokine in the absence of Fas. The elevated production of reactive oxygen species (ROS) in Fas-deficient MEFs was associated with dysfunctional mitochondria. Further, we determined that the known ROS scavenger NAC (N-acetyl-l-cysteine) could reverse the process of premature senescence in absence of Fas. Therefore, this study signifies a novel role of Fas in the control of cellular senescence.
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  • 文章类型: Journal Article
    Autophagy is of great significance in maintaining cellular homeostasis. Aberrant autophagy has been reported to contribute to the disease aetiology of metabolic syndrome, especially several key lysosomal storage disorders. However, the molecular mechanisms and the correlation between autophagy and lipid metabolism remains unclear. This study was designed and aimed to reveal the alteration of lipid metabolism in response to the autophagy induced by nutrient stress to give new insights into the molecular mechanisms between autophagy and lipid metabolism. An online normal-phase/reversed-phase two-dimensional liquid chromatography-mass spectrometry (NP/RP 2D LC-MS) method was developed to perform the lipidomics analysis of Atg7-/- mouse embryonic fibroblast cells (MEFs) and wild-type MEFs under nutrient stress. 48 and 35 lipid species in wild-type and Atg7-/- MEFs respectively finally meet the screening criteria with p-value less than 0.05 and fold change more than 1.5 in response to nutrient stress. Their alterations indicated that autophagy participated lipid metabolism to generate energy and form autophagosomes with significantly increased free fatty acids and glycerophospholipids, which protected wild-type MEFs from serious damages and delayed cell death. However, in Atg7-/- MEFs, due to the inhibition of autophagy, lipids were continuously consumed and cells suffered from damages even death. These results illustrated the close relationship between autophagy and lipid metabolism comprehensively and revealed diverse lipid targets for the investigation of autophagy.
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  • 文章类型: Journal Article
    OBJECTIVE: To develop a mouse cell biosensor system for the high-throughput genotoxicity detection of chemicals, such as environmental pollutants.
    METHODS: We developed a novel reporter vector pGL4-GFP, wherein the firefly luciferase reporter gene in the pGL4.82 vector was replaced by the green fluorescent protein (GFP) gene from the pAcGFP1-N1 vector. To construct the reporter pGL4-p53-GFP (p53 promoter linked to GFP), a fragment containing the p53 gene promoter was generated by amplifying a region from -481 to +180 of mouse genomic DNA isolated from mouse tail tissue. We developed a mouse cell biosensor system for the high-throughput genotoxicity detection of new drugs by stably integrating the reporter plasmid of pGL4-p53-GFP into the mouse embryonic fibroblast cells. Various genotoxic agents were used to treat this biosensor system. The resulting fluorescence was directly observed under a fluorescence microscope, and the GFP protein level was measured through Western blot analysis.
    RESULTS: The biosensor system was treated with genotoxic agents, such as doxorubicin, cyclophosphamide, and benzo(a)pyrene. The GFP protein expression was significantly increased in cells exposed to genotoxic agents but negatively responded to the non-genotoxic agent dimethyl sulfoxide, thereby proving the specificity and sensitivity of the biosensor system.
    CONCLUSIONS: This novel in vitro biosensor system can be especially useful in genotoxicity detection.
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