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首页> 外文期刊>Autophagy >De novo phosphatidylcholine synthesis is required for autophagosome membrane formation and maintenance during autophagy
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De novo phosphatidylcholine synthesis is required for autophagosome membrane formation and maintenance during autophagy

机译:副磷脂酰胆碱合成是自噬在自噬膜形成和维护中所必需的

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Macroautophagy/autophagy can enable cancer cells to withstand cellular stress and maintain bioenergetic homeostasis by sequestering cellular components into newly formed double-membrane vesicles destined for lysosomal degradation, potentially affecting the efficacy of anti-cancer treatments. Using C-13-labeled choline and C-13-magnetic resonance spectroscopy and western blotting, we show increased de novo choline phospholipid (ChoPL) production and activation of PCYT1A (phosphate cytidylyltransferase 1, choline, alpha), the rate-limiting enzyme of phosphatidylcholine (PtdCho) synthesis, during autophagy. We also discovered that the loss of PCYT1A activity results in compromised autophagosome formation and maintenance in autophagic cells. Direct tracing of ChoPLs with fluorescence and immunogold labeling imaging revealed the incorporation of newly synthesized ChoPLs into autophagosomal membranes, endoplasmic reticulum (ER) and mitochondria during anticancer drug-induced autophagy. Significant increase in the colocalization of fluorescence signals from the newly synthesized ChoPLs and mCherry-MAP1LC3/LC3 (microtubule-associated protein 1 light chain 3) was also found on autophagosomes accumulating in cells treated with autophagy-modulating compounds. Interestingly, cells undergoing active autophagy had an altered ChoPL profile, with longer and more unsaturated fatty acid/ alcohol chains detected. Our data suggest that de novo synthesis may be required to increase autophagosomal ChoPL content and alter its composition, together with replacing phospholipids consumed from other organelles during autophagosome formation and turnover. This addiction to de novo ChoPL synthesis and the critical role of PCYT1A may lead to development of agents targeting autophagy-induced drug resistance. In addition, fluorescence imaging of choline phospholipids could provide a useful way to visualize autophagosomes in cells and tissues.
机译:宏观摄影/自噬能使癌细胞能够通过将细胞组分螯合到用于溶酶体降解的新形成的双膜囊泡,潜在地影响抗癌治疗的功效,使癌细胞能够承受细胞应激并维持生物植物稳态。使用C-13标记的胆碱和C-13-磁共振谱和Western印迹,我们显示出越来越多的胆碱磷脂(ChopL)生产和活化PCYT1a(磷酸胞嘧啶三转移酶1,Choline,α),速率限制酶磷脂基胆碱(PTDCHO)合成,在自噬期间。我们还发现,PCYT1a活性的损失导致自噬细胞中的自噬体形成和维持损失。具有荧光和免疫形状标记成像的直接跟踪揭示了在抗癌药物诱导的自噬期间将新合成的雌型掺入自噬复印体膜,内质网(ER)和线粒体。还发现了在用自噬调节化合物处理的细胞中积聚的自噬体上的自噬体上发现来自新合成的舌和McCherry-Map1LC3 / LC3(微管相关蛋白1光链3)的荧光信号的分致大致增加。有趣的是,经历活性自噬的细胞具有改变的呼吸谱,具有更长且更长的不饱和脂肪酸/酒精链。我们的数据表明,可以要求De Novo合成增加自噬复印体溶解含量并改变其组合物,以及在自噬体组形成和周转过程中替代其他细胞器所消耗的磷脂。这种成瘾对De Novo Chopl合成和PCYT1a的关键作用可能导致靶向自噬诱导的耐药性的药剂的发展。此外,胆碱磷脂的荧光成像可以提供可视化细胞和组织中的自噬物的有用方法。

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