Amen Triana, Kaganovich Daniel
Department of Experimental Neurodegeneration, University Medical Center Göttingen, Göttingen, Germany.
1Base Pharmaceuticals, Boston, MA, United States.
Front Cell Dev Biol. 2021 Apr 16;8:606111. doi: 10.3389/fcell.2020.606111. eCollection 2020.
Metabolic regulation is a necessary component of all stress response pathways, because all different mechanisms of stress-adaptation place high-energy demands on the cell. Mechanisms that integrate diverse stress response pathways with their metabolic components are therefore of great interest, but few are known. We show that stress granule (SG) formation, a common adaptive response to a variety of stresses, is reciprocally regulated by the pathways inducing lipid droplet accumulation. Inability to upregulate lipid droplets reduces stress granule formation. Stress granule formation in turn drives lipid droplet clustering and fatty acid accumulation. Our findings reveal a novel connection between stress response pathways and new modifiers of stress granule formation.
代谢调节是所有应激反应途径的必要组成部分,因为所有不同的应激适应机制都对细胞提出了高能量需求。因此,将多种应激反应途径与其代谢成分整合在一起的机制备受关注,但目前所知甚少。我们发现,应激颗粒(SG)的形成是对多种应激的一种常见适应性反应,它受到诱导脂滴积累的途径的反向调节。无法上调脂滴会减少应激颗粒的形成。应激颗粒的形成反过来又会驱动脂滴聚集和脂肪酸积累。我们的研究结果揭示了应激反应途径与应激颗粒形成的新调节因子之间的一种新联系。