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首页> 外文期刊>American Journal of Physiology >Perturbed mitochondrial dynamics, an emerging aspect of epithelial-microbe interactions
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Perturbed mitochondrial dynamics, an emerging aspect of epithelial-microbe interactions

机译:扰动线粒体动力学,上皮微生物相互作用的新兴方面

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Mitochondria exist in a complex network that is constantly remodeling via the processes of fission and fusion in response to intracellular conditions and extracellular stimuli. Excessive fragmentation of the mitochondrial network because of an imbalance between fission and fusion reduces the cells' capacity to generate ATP and can be a forerunner to cell death. Given the critical roles mitochondria play in cellular homeostasis and innate immunity, it is not surprising that many microbial pathogens can disrupt mitochondrial activity. Here we note the putative contribution of mitochondrial dysfunction to gut disease and review data showing that infection with microbial pathogens can alter the balance between mitochondrial fragmentation and fusion, preventing normal remodeling (i.e., dynamics) and can lead to cell death. Current data indicate that infection of epithelia or macrophages with microbial pathogens will ultimately result in excessive fragmentation of the mitochondrial network. Concerted research efforts are required to elucidate fully the processes that regulate mitochondrial dynamics, the mechanisms by which microbes affect epithelial mitochondrial fission and/or fusion, and the implications of this for susceptibility to infectious disease. We speculate that the commensal microbiome of the gut may be important for normal epithelial mitochondrial form and function. Drugs designed to counteract the effect of microbial pathogen interference with mitochondrial dynamics may be a new approach to infectious disease at mucosal surfaces.
机译:线粒体存在于复杂的网络中,该复杂网络通过裂变和融合过程不断重塑,响应于细胞内条件和细胞外刺激。由于裂变和融合之间的不平衡,线粒体网络的过度破碎降低了细胞的产生ATP的能力,并且可以是细胞死亡的先行者。鉴于线粒体的关键作用在细胞稳态和先天免疫力下发挥,许多微生物病原体可能破坏线粒体活性并不令人惊讶。在这里,我们注意到线粒体功能障碍对肠病疾病的推定贡献,并且审查数据显示用微生物病原体感染可以改变线粒体破碎和融合之间的平衡,防止正常重塑(即动态)并且可以导致细胞死亡。目前的数据表明,具有微生物病原体的上皮或巨噬细胞的感染最终会导致线粒体网络的过度破碎。需要协调的研究努力来完全调节线粒体动态的过程,微生物影响上皮线粒体裂变和/或融合的机制,以及对传染病易感性的影响。我们推测肠道的共生微生物组对正常上皮线粒体形式和功能可能是重要的。设计用于抵消微生物病原体干扰对线粒体动力学的影响的药物可能是粘膜表面传染病的新方法。

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