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The variability of autophagy and cell death susceptibility Unanswered questions

机译:自噬和细胞死亡易感性的可变性未答复的问题

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摘要

Impaired autophagic machinery is implicated in a number of diseases such as heart disease, neurodegeneration and cancer. A common denominator in these pathologies is a dys-regulation of autophagy that has been linked to a change in susceptibility to cell death. Although we have progressed in understanding the molecular machinery and regulation of the autophagic pathway, many unanswered questions remain. How does the metabolic contribution of autophagy connect with the cell's history and how does its current autophagic flux affect metabolic status and susceptibility to undergo cell death? How does autophagic flux operate to switch metabolic direction and what are the underlying mechanisms in metabolite and energetic sensing, metabolite substrate provision and metabolic integration during the cellular stress response? In this article we focus on unresolved questions that address issues around the role of autophagy in sensing the energetic environment and its role in actively generating metabolite substrates. We attempt to provide answers by explaining how and when a change in autophagic pathway activity such as primary stress response is able to affect cell viability and when not. By addressing the dynamic metabolic relationship between autophagy, apoptosis and necrosis we provide a new perspective on the parameters that connect autophagic activity, severity of injury and cellular history in a logical manner. Last, by evaluating the cell's condition and autophagic activity in a clear context of regulatory parameters in the intra- and extracellular environment, this review provides new concepts that set autophagy into an energetic feedback loop, that may assist in our understanding of autophagy in maintaining healthy cells or when it controls the threshold between cell death and cell survival.
机译:受损的自噬机械涉及许多疾病,如心脏病,神经变性和癌症。这些病理中的常见的母细胞病变是一种性能调节的自噬,与细胞死亡的易感性的变化相关联。虽然我们在理解自噬途径的分子机制和调节方面取得了进展,但许多未答复的问题仍然存在。自噬与细胞历史如何与细胞的历史结合的代谢贡献如何以及其目前的自噬磁通量如何影响代谢状态和易受接受细胞死亡的敏感性?自噬磁通如何运行以切换代谢方向,并且在细胞应激反应期间代谢物和能量感测,代谢物基质提供和代谢集成的潜在机制是什么?在本文中,我们专注于尚未解决的问题,以解决自噬在激发能量环境中的作用及其在积极产生代谢物基质中的作用问题的尚未解决的问题。我们试图通过解释自噬途径活动的变化,例如初级应力响应诸如初级应力响应的变化能够影响细胞活力而提供答案。通过解决自噬,细胞凋亡和坏死之间的动态代谢关系,我们提供了一种新的视角,这些参数以逻辑方式连接自噬活动,伤害严重程度和蜂窝历史的参数。最后,通过在细胞和细胞内环境中的调控参数的明确背景下评估细胞的病情和自噬活动,这篇综述提供了将自噬的新概念设置为能量反馈循环,这可能有助于我们对维持健康的自噬理解细胞或当它控制细胞死亡和细胞存活之间的阈值。

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