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首页> 外文期刊>Cellular Physiology and Biochemistry >The Role of Intestinal Fatty Acid Binding Proteins in Protecting Cells from Fatty Acid Induced Impairment of Mitochondrial Dynamics and Apoptosis
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The Role of Intestinal Fatty Acid Binding Proteins in Protecting Cells from Fatty Acid Induced Impairment of Mitochondrial Dynamics and Apoptosis

机译:肠道脂肪酸结合蛋白在保护细胞免受脂肪酸诱导的线粒体动力学和细胞凋亡的损害中的作用。

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Background/Aims The conformation, folding and lipid binding properties of the intestinal fatty acid binding proteins (IFABP) have been extensively investigated. In contrast, the functional aspects of these proteins are not understood and matter of debates. In this study, we aim to address the deleterious effects of FA overload on cellular components, particularly mitochondria; and how IFABP helps in combating this stress by restoring the mitochondrial dynamics. Methods In the present study the functional aspect of IFABP under conditions of lipid stress was studied by a string of extensive in-cell studies; flow cytometry by fluorescence-activated cell sorting (FACS), confocal imaging, western blotting and quantitative real time PCR. We deployed ectopic expression of IFABP in rescuing cells under the condition of lipid stress. Again in order to unveil the mechanistic insights of functional traits, we arrayed extensive computational approaches by means of studying centrality calculations along with protein-protein association and ligand induced cluster dissociation. While addressing its functional importance, we used FCS and in-silico computational analyses, to show the structural distribution and the underlying mechanism of IFABP’s action. Results Ectopic expression of IFABP in HeLa cells has been found to rescue mitochondrial morphological dynamics and restore membrane potential, partially preventing apoptotic damage induced by the increased FAs. These findings have been further validated in the functionally relevant intestinal Caco-2 cells, where the native expression of IFABP protects mitochondrial morphology from abrogation induced by FA overload. However, this native level expression is insufficient to protect against apoptotic cell death, which is rescued, at least partially in cells overexpressing IFABP. In addition, shRNA mediated IFABP knockdown in Caco-2 cells compromises mitochondrial dynamics and switches on intrinsic apoptotic pathways under FA-induced metabolic stress. Conclusion To summarize, the present study implicates functional significance of IFABP in controlling ligand-induced damage in mitochondrial dynamics and apoptosis.
机译:背景/目的已经广泛研究了肠脂肪酸结合蛋白(IFABP)的构象,折叠和脂质结合特性。相比之下,这些蛋白质的功能方面尚不为人所知,也尚有争议。在这项研究中,我们旨在解决FA超负荷对细胞成分特别是线粒体的有害影响。以及IFABP如何通过恢复线粒体动力学来帮助缓解这种压力。方法在本研究中,通过一系列广泛的细胞内研究来研究IFABP在脂质应激条件下的功能方面。通过荧光激活细胞分选(FACS),共聚焦成像,蛋白质印迹和定量实时PCR进行流式细胞术。我们在脂质应激条件下在救援细胞中部署了IFABP的异位表达。再次为了揭示功能性特征的机理见解,我们通过研究中心性计算以及蛋白质-蛋白质缔合和配体诱导的簇解离,排列了广泛的计算方法。在解决其功能重要性时,我们使用了FCS和计算机内计算分析,以显示IFABP动作的结构分布和潜在机制。结果已发现HeLa细胞中IFABP的异位表达可挽救线粒体的形态动力学并恢复膜电位,从而部分阻止FAs诱导的凋亡损伤。这些发现在功能相关的肠道Caco-2细胞中得到了进一步验证,其中IFABP的天然表达可保护线粒体形态免受FA超负荷引起的废除。但是,这种天然水平的表达不足以防止凋亡细胞死亡,这种细胞死亡至少在部分过表达IFABP的细胞中得以挽救。此外,shRNA介导的Caco-2细胞中的IFABP敲低损害了线粒体动力学,并在FA诱导的代谢应激下切换了固有的凋亡途径。结论总而言之,本研究暗示IFABP在控制配体诱导的线粒体动力学和凋亡中的功能意义。

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