Herms Albert, Bosch Marta, Reddy Babu J N, Schieber Nicole L, Fajardo Alba, Rupérez Celia, Fernández-Vidal Andrea, Ferguson Charles, Rentero Carles, Tebar Francesc, Enrich Carlos, Parton Robert G, Gross Steven P, Pol Albert
Cell Compartments and Signaling Group, Institut d'Investigacions Biomèdiques August Pi i Sunyer (IDIBAPS), Barcelona 08036, Spain.
Department of Developmental and Cell Biology, UC Irvine, Irvine, California 92697, USA.
Nat Commun. 2015 May 27;6:7176. doi: 10.1038/ncomms8176.
Lipid droplets (LDs) are intracellular organelles that provide fatty acids (FAs) to cellular processes including synthesis of membranes and production of metabolic energy. While known to move bidirectionally along microtubules (MTs), the role of LD motion and whether it facilitates interaction with other organelles are unclear. Here we show that during nutrient starvation, LDs and mitochondria relocate on detyrosinated MT from the cell centre to adopt a dispersed distribution. In the cell periphery, LD-mitochondria interactions increase and LDs efficiently supply FAs for mitochondrial beta-oxidation. This cellular adaptation requires the activation of the energy sensor AMPK, which in response to starvation simultaneously increases LD motion, reorganizes the network of detyrosinated MTs and activates mitochondria. In conclusion, we describe the existence of a specialized cellular network connecting the cellular energetic status and MT dynamics to coordinate the functioning of LDs and mitochondria during nutrient scarcity.
脂滴(LDs)是细胞内的细胞器,可为包括膜合成和代谢能量产生在内的细胞过程提供脂肪酸(FAs)。虽然已知脂滴沿微管(MTs)双向移动,但其移动的作用以及是否促进与其他细胞器的相互作用尚不清楚。在这里,我们表明在营养饥饿期间,脂滴和线粒体从细胞中心重新定位到去酪氨酸化的微管上,以采用分散分布。在细胞周边,脂滴 - 线粒体相互作用增加,脂滴有效地为线粒体β氧化提供脂肪酸。这种细胞适应性需要能量传感器AMPK的激活,AMPK响应饥饿同时增加脂滴运动,重组去酪氨酸化微管网络并激活线粒体。总之,我们描述了一种特殊的细胞网络的存在,该网络连接细胞能量状态和微管动力学,以在营养缺乏期间协调脂滴和线粒体的功能。