棕榈酸通过损害自噬体-溶酶体融合和内溶酶体动力学来降低下丘脑神经元的自噬通量。

Molecular & cellular oncology Pub Date : 2020-07-25 eCollection Date: 2020-01-01 DOI:10.1080/23723556.2020.1789418
María Paz Hernández-Cáceres, Karina Cereceda, Sergio Hernández, Ying Li, Carla Narro, Patricia Rivera, Patricio Silva, Yenniffer Ávalos, Claudia Jara, Paulina Burgos, Lilian Toledo-Valenzuela, Pablo Lagos, Flavia Cifuentes Araneda, Claudio Perez-Leighton, Cristina Bertocchi, Deborah J Clegg, Alfredo Criollo, Cheril Tapia-Rojas, Patricia V Burgos, Eugenia Morselli
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引用次数: 21

摘要

高脂肪饮食(HFD)引起的肥胖与癌症风险增加有关。长期饲喂高脂饲料增加了下丘脑饱和脂肪酸棕榈酸(PA)的浓度。我们之前的研究表明,在下丘脑神经元细胞中,暴露于PA会抑制自噬通量,自噬通量是自噬体从合成到溶酶体融合和降解的整个自噬过程。然而,PA损害下丘脑神经元自噬的机制尚不清楚。在这里,我们发现PA介导的自噬通量的减少不是由溶酶体功能障碍引起的,因为PA治疗不会损害溶酶体的pH或组织蛋白酶b的活性。相反,PA通过减少自噬体与溶酶体的融合来失调自噬,这与内溶酶体腔室的肿胀有关,其动力学表现为减少。最后,由于溶酶体受到小Rab7 GTPase的持续动态调节,我们研究了PA处理对其活性的影响。有趣的是,我们发现PA处理改变了Rab7的活性。总之,这些结果揭示了PA暴露损害自噬通量的细胞过程。由于下丘脑神经元自噬受损促进肥胖,而抑制恶性转化需要平衡的自噬,这可能影响肿瘤的发生、进展和/或对肥胖相关癌症治疗的反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Palmitic acid reduces the autophagic flux in hypothalamic neurons by impairing autophagosome-lysosome fusion and endolysosomal dynamics.

High-fat diet (HFD)-induced obesity is associated with increased cancer risk. Long-term feeding with HFD increases the concentration of the saturated fatty acid palmitic acid (PA) in the hypothalamus. We previously showed that, in hypothalamic neuronal cells, exposure to PA inhibits the autophagic flux, which is the whole autophagic process from the synthesis of the autophagosomes, up to their lysosomal fusion and degradation. However, the mechanism by which PA impairs autophagy in hypothalamic neurons remains unknown. Here, we show that PA-mediated reduction of the autophagic flux is not caused by lysosomal dysfunction, as PA treatment does not impair lysosomal pH or the activity of cathepsin B.Instead, PA dysregulates autophagy by reducing autophagosome-lysosome fusion, which correlates with the swelling of endolysosomal compartments that show areduction in their dynamics. Finally, because lysosomes undergo constant dynamic regulation by the small Rab7 GTPase, we investigated the effect of PA treatment on its activity. Interestingly, we found PA treatment altered the activity of Rab7. Altogether, these results unveil the cellular process by which PA exposure impairs the autophagic flux. As impaired autophagy in hypothalamic neurons promotes obesity, and balanced autophagy is required to inhibit malignant transformation, this could affect tumor initiation, progression, and/or response to therapy of obesity-related cancers.

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