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Cholesterol homeostasis and autophagic flux in perifosine-treated human hepatoblastoma HepG2 and glioblastoma U-87 MG cell lines

机译:磷灰石处理过的人肝母细胞瘤HepG2和胶质母细胞瘤U-87 MG细胞系中的胆固醇稳态和自噬通量

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Perifosine exerts an antiproliferative effect on HepG2 and U-87 MG cells and also interferes with the transport of cholesterol from the plasma membrane to the endoplasmic reticulum (ER). Recently we demonstrated that exposure of U-87 MG cells to perifosine causes an accumulation of autophagosomes. We have now expanded the study to establish the molecular mechanism by which perifosine interferes with the autophagic process. Using transmission electron microscopy, we report that the treatment of HepG2 and U-87 MG cells with perifosine causes an intense cytoplasmic vacuolization identified as autophagic vesicles. The accumulation of autophagosomes induced by perifosine is due to a blockage of the autophagic flux, thereby affecting cell proliferation. Perifosine also provokes a differential ER stress response in the HepG2 and U-87 MG cell lines. We have also demonstrated a relationship between the deregulation of cholesterol transport and the inhibition of the autophagic flux prompted by perifosine. Thus our findings clearly demonstrate that perifosine impairs the autophagic flux in HepG2 and U-87 MG cells, which is related to defects in intracellular cholesterol transport. Our study is relevant for anticancer therapy because tumour cells exhibit autophagy as a pro-survival mechanism. Further research to identify the precise mechanisms of autophagy maturation and the role of cholesterol may provide new insights into the antiproliferative action of perifosine. (C) 2015 Elsevier Inc. All rights reserved.
机译:Perifosine对HepG2和U-87 MG细胞具有抗增殖作用,并且还干扰胆固醇从质膜向内质网(ER)的转运。最近,我们证明了U-87 MG细胞暴露于过磷酸氢钙会导致自噬体的积累。现在我们扩大了研究范围,以建立periposine干扰自噬过程的分子机制。使用透射电子显微镜,我们报告说,用过磷酸氢吗啡治疗HepG2和U-87 MG细胞会导致强烈的胞浆空泡化,被鉴定为自噬囊泡。过磷磷诱导的自噬体的积累是由于自噬通量的阻塞,从而影响细胞增殖。 Perifosine还可以在HepG2和U-87 MG细胞系中引起不同的ER应激反应。我们还证明了胆固醇转运的失调与periposine引起的自噬通量抑制之间的关系。因此,我们的发现清楚地表明,perofosine损害了HepG2和U-87 MG细胞中的自噬通量,这与细胞内胆固醇转运的缺陷有关。我们的研究与抗癌治疗有关,因为肿瘤细胞表现出自噬作为一种生存机制。进一步研究以确定自噬成熟的确切机制和胆固醇的作用,可能会为periposine的抗增殖作用提供新的见解。 (C)2015 Elsevier Inc.保留所有权利。

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