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Endoplasmic Reticulum-Vacuole Contact Sites Bloom With Stress-Induced Lipid Droplets

机译:内质网-液泡接触部位绽放与应力诱导的脂质液滴

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摘要

Lipid droplets (LDs) serve as specialized cytoplasmic organelles that harbor energy-rich lipids for long-term storage and may be mobilized as nutrient sources during extended starvation. How cells coordinate LD biogenesis and utilization in response to fluctuations in nutrient availability remains poorly understood. Here, we discuss our recent work revealing how yeast spatially organize LD budding at organelle contacts formed between the endoplasmic reticulum and yeast vacuole/lysosome (sites known as nucleus-vacuole junctions [NVJs]). During times of imminent nutrient exhaustion, we observe blooms of stress-induced LDs surrounding the NVJ and find that this LD clustering is regulated by NVJ-resident protein Mdm1. We also discuss several emerging studies revealing specific proteins that demarcate a subpopulation of NVJ-associated LDs. Collectively, these studies reveal a previously unappreciated role for the spatial compartmentalization of LDs at organelle contacts and highlight an important role for interorganellar cross talk in LD dynamics under times of nutritional stress.
机译:脂质小滴(LDs)充当专门的细胞质细胞器,其中含有能量丰富的脂质,可长期保存,并可在长期饥饿期间被调动为营养来源。细胞如何协调LD生物发生和利用以响应养分利用率的波动仍然知之甚少。在这里,我们讨论了我们最近的工作,揭示了酵母如何在空间上组织内质网和酵母液泡/溶酶体(称为核-真空连接[NVJs]的位置)之间形成的细胞器接触处的LD萌芽。在即将耗尽养分的过程中,我们观察到了NVJ周围应力诱导的LD的开花,发现该LD簇受NVJ驻留蛋白Mdm1调控。我们还将讨论一些新兴的研究,这些研究揭示了划定了与NVJ相关的LDs亚群的特定蛋白质。总的来说,这些研究揭示了在细胞器接触时LDs在空间上的区室化作用,这在以前是无法理解的,并着重说明了在营养压力下,器官间串扰在LD动力学中的重要作用。

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