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Sphingolipids and Mitochondrial Dynamic

机译:鞘脂与线粒体动态

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摘要

For decades, sphingolipids have been related to several biological functions such as immune system regulation, cell survival, and proliferation. Recently, it has been reported that sphingolipids could be biomarkers in cancer and in other human disorders such as metabolic diseases. This is evidenced by the biological complexity of the sphingolipids associated with cell type-specific signaling and diverse sphingolipids molecules. As mitochondria dynamics have serious implications in homeostasis, in the present review, we focused on the relationship between sphingolipids, mainly ceramides and sphingosine-1-phosphate, and mitochondrial dynamics directed by fission, fusion, and mitophagy. There is evidence that the balances of ceramides (C18 and C16) and S1P, as well as the location of specific ceramide synthases in mitochondria, have roles in mitophagy and fission with an impact on cell fate and metabolism. However, signaling pathways controlling the sphingolipids metabolism and their location in mitochondria need to be better understood in order to propose new interventions and therapeutic strategies.
机译:数十年来,鞘脂一直与多种生物学功能有关,例如免疫系统调节,细胞存活和增殖。最近,据报道鞘脂可能是癌症和其他人类疾病如代谢疾病中的生物标志物。这通过与细胞类型特异性信号传导和多种鞘脂分子相关的鞘脂的生物学复杂性来证明。由于线粒体动力学在体内平衡中具有重要意义,因此,在本综述中,我们重点关注鞘脂(主要是神经酰胺和1鞘氨醇磷酸)与裂变,融合和线粒体定向的线粒体动力学之间的关系。有证据表明,神经酰胺(C18和C16)和S1P的平衡,以及特定神经酰胺合酶在线粒体中的位置,在线粒体和裂变中起作用,影响细胞命运和新陈代谢。然而,为了提出新的干预措施和治疗策略,需要更好地了解控制鞘脂代谢及其在线粒体中位置的信号传导途径。

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