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Mechanisms of stearoyl CoA desaturase inhibitor sensitivity and acquired resistance in cancer

机译:硬脂酰CoA去饱和酶抑制剂敏感性和癌症抗性机制

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The lipogenic enzyme stearoyl CoA desaturase (SCD) plays a key role in tumor lipid metabolism and membrane architecture. SCD is often up-regulated and a therapeutic target in cancer. Here, we report the unexpected finding that median expression of SCD is low in glioblastoma relative to normal brain due to hypermethylation and unintentional monoallelic co-deletion with phosphatase and tensin homolog (PTEN) in a subset of patients. Cell lines from this subset expressed undetectable SCD, yet retained residual SCD enzymatic activity. Unexpectedly, these lines evolved to survive independent of SCD through unknown mechanisms. Cell lines that escaped such genetic and epigenetic alterations expressed higher levels of SCD and were highly dependent on SCD for survival. Last, we identify that SCD-dependent lines acquire resistance through a previously unknown FBJ murine osteosarcoma viral oncogene homolog B (FOSB)–mediated mechanism. Accordingly, FOSB inhibition blunted acquired resistance and extended survival of tumor-bearing mice treated with SCD inhibitor.
机译:脂质酶硬脂酰CoA去脱酶(SCD)在肿瘤脂质代谢和膜结构中起着关键作用。 SCD通常是上调和癌症治疗靶标。在这里,我们报告了由于在患者的磷酸酶和Tensin Homolog(PTEN)中,在患者的磷酸酶和Tensin Homolog(PTEN)中,SCD的中值表达在胶质母细胞瘤中的中位数表达低。来自该子集的细胞系表达了不可检测的SCD,但保留了残留的SCD酶活性。出乎意料的是,这些线路演变为通过未知机制独立于SCD而生存。转义这种遗传和表观遗传改变的细胞系表达了较高水平的SCD,并且高度依赖于SCD以存活。最后,我们确定SCD依赖的线通过先前未知的FBJ鼠骨肉瘤病毒癌癌(FOSB)介导机构获得阻力。因此,FOSB抑制截然不良的抗性抑制剂的耐受性和延长存活的SCD抑制剂处理的肿瘤小鼠。

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