首页> 美国卫生研究院文献>other >Mitochondria to Nucleus Signaling and the Role of Ceramide in Its Integration into the Suite of Cell Quality Control Processes during Aging Mitochondria to Nucleus Signaling and the Role of Ceramide in Its Integration into the Suite of Cell Quality Control Processes during Aging
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Mitochondria to Nucleus Signaling and the Role of Ceramide in Its Integration into the Suite of Cell Quality Control Processes during Aging Mitochondria to Nucleus Signaling and the Role of Ceramide in Its Integration into the Suite of Cell Quality Control Processes during Aging

机译:衰老过程中线粒体向细胞核信号传导和神经酰胺在其整合到细胞质量控制过程中的作用衰老过程中线粒体向细胞核信号传导及其神经酰胺在整合到细胞质量控制过程中的作用

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摘要

Mitochondria to nucleus signaling has been the most extensively studied mode of inter-organelle communication. The first signaling pathway in this category of information transfer to be discovered was the retrograde response, with its own set of signal transduction proteins. The finding that this pathway compensates for mitochondrial dysfunction to extend the replicative lifespan of yeast cells has generated additional impetus for its study. This research has demonstrated crosstalk between the retrograde response and the target of rapamycin (TOR), small GTPase RAS, and high-osmolarity glycerol (HOG) pathways in yeast, all of which are key players in replicative lifespan. More recently, the retrograde response has been implicated in the diauxic shift and survival in stationary phase, extending its operation to the yeast chronological lifespan as well. In this capacity, the retrograde response may cooperate with other, related mitochondria to nucleus signaling pathways. Counterparts of the retrograde response are found in the roundworm, the fruit fly, the mouse, and even in human cells in tissue culture. The exciting realization that the retrograde response is embedded in the network of cellular quality control processes has emerged over the past few years. Most strikingly, it is closely integrated with autophagy and the selective brand of this quality control process, mitophagy. This coordination depends on TOR, and it engages ceramide/sphingolipid signaling. The yeast LAG1 ceramide synthase gene was the first longevity gene cloned as such, and its orthologs hyl-1 and hyl-2 determine worm lifespan. Thus, the involvement of ceramide signaling in quality control gives these findings cellular context. The retrograde response and ceramide are essential components of a lifespan maintenance process that likely evolved as a cytoprotective mechanism to defend the organism from diverse stressors.
机译:线粒体到细胞核的信号传导已成为细胞间通讯最广泛研究的模式。这类信息传递中的第一个信号通路是逆行反应,具有自己的信号转导蛋白。该途径补偿线粒体功能障碍以延长酵母细胞复制寿命的发现为其研究提供了更多动力。这项研究证明了酵母的雷帕霉素(TOR),小GTPase RAS和高渗透压甘油(HOG)途径的逆行反应与靶标之间的串扰,所有这些都是复制寿命的关键因素。最近,逆行反应与固定期的双峰转移和存活有关,也将其操作扩展到酵母的时间寿命。以这种能力,逆行反应可能与其他相关的线粒体协同作用于细胞核信号通路。在the虫,果蝇,小鼠乃至组织培养的人体细胞中都发现了逆行反应的对应物。在过去的几年中已经出现了令人兴奋的认识,即逆行响应已嵌入到细胞质量控制过程的网络中。最引人注目的是,它与自噬和质量控制过程的选择性品牌紧密结合在一起。这种协调取决于TOR,并且它参与神经酰胺/鞘脂信号传导。酵母LAG1神经酰胺合酶基因是第一个这样克隆的长寿基因,其直系同源物hyl-1和hyl-2决定了蠕虫的寿命。因此,神经酰胺信号传导参与质量控制使这些发现具有细胞背景。逆行反应和神经酰胺是生命维持过程的重要组成部分,该过程可能演变为保护生物免受各种压力的细胞保护机制。

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    S. Michal Jazwinski;

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  • 年(卷),期 -1(23),0 0
  • 年度 -1
  • 页码 67–74
  • 总页数 18
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  • 入库时间 2022-08-21 11:16:55

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