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Lipid remodeling in response to methionine stress in MDA-MBA-468 triple-negative breast cancer cells

机译:脂质重塑响应于MDA-MBA-468三阴性乳腺癌细胞中的蛋氨酸胁迫

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摘要

Methionine (Met) is an essential amino acid and critical precursor to the cellular methyl donor S-adenosylmethionine. Unlike nontransformed cells, cancer cells have a unique metabolic requirement for Met and are unable to proliferate in growth media where Met is replaced with its metabolic precursor, homocysteine. This metabolic vulnerability is common among cancer cells regardless of tissue origin and is known as “methionine dependence”, “methionine stress sensitivity”, or the Hoffman effect. The response of lipids to Met stress, however, is not well-understood. Using mass spectroscopy, label-free vibrational microscopy, and next-generation sequencing, we characterize the response of lipids to Met stress in the triple-negative breast cancer cell line MDA-MB-468 and its Met stress insensitive derivative, MDA-MB-468res-R8. Lipidome analysis identified an immediate, global decrease in lipid abundances with the exception of triglycerides and an increase in lipid droplets in response to Met stress specifically in MDA-MB-468 cells. Furthermore, specific gene expression changes were observed as a secondary response to Met stress in MDA-MB-468, resulting in a downregulation of fatty acid metabolic genes and an upregulation of genes in the unfolded protein response pathway. We conclude that the extensive changes in lipid abundance during Met stress is a direct consequence of the modified metabolic profile previously described in Met stress–sensitive cells. The changes in lipid abundance likely results in changes in membrane composition inducing the unfolded protein response we observe.
机译:甲硫氨酸(MET)是细胞甲基供体S-腺苷甲硫氨酸的必需氨基酸和关键前体。与非转化细胞不同,癌细胞对满足具有独特的代谢需求,并且不能在符合其代谢前体,同型半胱氨酸替换所遇见的生长培养基中。这种代谢脆弱性在癌细胞中是常见的,无论组织源如何,都被称为“甲硫氨酸依赖性”,“甲硫氨酸胁迫敏感性”或霍夫曼效应。然而,脂质达到应力的响应是不太理解的。使用质谱,无标记振动显微镜和下一代测序,我们表征脂质对三阴性乳腺癌细胞系MDA-MB-468中应激的响应及其满足应激不敏感衍生物,MDA-MB- 468res-r8。脂质体分析鉴定了脂质丰富的直接全局降低,除甘油三酯外,脂质液滴的增加响应于MDA-MB-468细胞的特异性胁迫。此外,观察到特异性基因表达变化作为在MDA-MB-468中达到应激的二次反应,导致脂肪酸代谢基因的下调和在展开的蛋白质反应途径中的基因上调。我们得出结论,在满足符合符合应激敏感细胞中先前描述的改性代谢型的直接后果是脂肪丰度的广泛改变。脂质丰富的变化可能导致膜组合物的变化诱导我们观察到的展开蛋白质反应。

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