首页> 外文期刊>The Journal of biological chemistry >Alteration of Plasma Membrane Organization by an Anticancer Lysophosphatidylcholine Analogue Induces Intracellular Acidification and Internalization of Plasma Membrane Transporters in Yeast
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Alteration of Plasma Membrane Organization by an Anticancer Lysophosphatidylcholine Analogue Induces Intracellular Acidification and Internalization of Plasma Membrane Transporters in Yeast

机译:抗癌溶血磷脂基胆碱类似物的血浆膜组织的改变诱导酵母血浆膜转运蛋白的细胞内酸化和内化

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The lysophosphatidylcholine analogue edelfosine is a potent antitumor lipid that targets cellular membranes. The underlying mechanisms leading to cell death remain controversial, although two cellular membranes have emerged as primary targets of edelfosine, the plasma membrane (PM) and the endoplasmic reticulum. In an effort to identify conditions that enhance or prevent the cytotoxic effect of edelfosine, we have conducted genome-wide surveys of edelfosine sensitivity and resistance in Saccharomyces cerevisiae presented in this work and the accompanying paper (Cuesta-Marbán, á., Botet, J., Czyz, O., Cacharro, L. M., Gajate, C., Hornillos, V., Delgado, J., Zhang, H., Amat-Guerri, F., Acu?a, A. U., McMaster, C. R., Revuelta, J. L., Zaremberg, V., and Mollinedo, F. (January 23, 2013) J. Biol. Chem. 288,), respectively. Our results point to maintenance of pH homeostasis as a major player in modulating susceptibility to edelfosine with the PM proton pump Pma1p playing a main role. We demonstrate that edelfosine alters PM organization and induces intracellular acidification. Significantly, we show that edelfosine selectively reduces lateral segregation of PM proteins like Pma1p and nutrient H+-symporters inducing their ubiquitination and internalization. The biology associated to the mode of action of edelfosine we have unveiled includes selective modification of lipid raft integrity altering pH homeostasis, which in turn regulates cell growth.
机译:溶血磷脂酰胆碱类似物EdelfoSine是靶向细胞膜的有效抗肿瘤脂质。导致细胞死亡的潜在机制仍然存在争议,尽管两种细胞膜被出现为Edelfosine的主要靶,血浆膜(PM)和内质网。努力识别增强或预防Edelfosine的细胞毒性作用的条件,我们在本工作中提出的酿酒酵母和伴随的杂志(Cuesta-Marbán,Á。,博特,J 。,Czyz,O.,Cacharro,LM,Gajate,C.,Mornillos,V.,Delgado,J.,Zhang,H.,Amat-Guerri,F.,Acu?A,Au,McMaster,Cr,Revuelta, JL,Zaremberg,V.和Mollinedo,F。(2013年1月23日)J. Biol。化学。288,)。我们的结果指出,用PM质子泵PMA1P在发挥主要作用的主要作用中,将pH稳态的维持作为调节埃索替料氨酸的敏感性。我们证明Edelfosine改变了PM组织并诱导细胞内酸化。值得注意的是,我们表明EdelfoSine选择性地减少了PMA1P和营养H + -Symporters等PM蛋白的侧向偏析,诱导其泛素化和内化。与我们推出的Edelfosine的作用方式相关的生物学包括选择性修饰脂质筏完整性改变的pH稳态,这反过来调节细胞生长。

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