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Squalene epoxidase is a bona fide oncogene by amplification with clinical relevance in breast cancer

机译:角鲨烯环氧酶是一种真正的癌基因在乳腺癌中具有临床相关性

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摘要

SQLE encodes squalene epoxidase, a key enzyme in cholesterol synthesis. SQLE has sporadically been reported among copy-number driven transcripts in multi-omics cancer projects. Yet, its functional relevance has never been subjected to systematic analyses. Here, we assessed the correlation of SQLE copy number (CN) and gene expression (GE) across multiple cancer types, focusing on the clinico-pathological associations in breast cancer (BC). We then investigated whether any biological effect of SQLE inhibition could be observed in BC cell line models. Breast, ovarian, and colorectal cancers showed the highest CN driven GE among 8,783 cases from 22 cancer types, with BC presenting the strongest one. SQLE overexpression was more prevalent in aggressive BC, and was an independent prognostic factor of unfavorable outcome. Through SQLE pharmacological inhibition and silencing in a panel of BC cell lines portraying the diversity of SQLE CN and GE, we demonstrated that SQLE inhibition resulted in a copy-dosage correlated decrease in cell viability, and in a noticeable increase in replication time, only in lines with detectable SQLE transcript. Altogether, our results pinpoint SQLE as a bona fide metabolic oncogene by amplification, and as a therapeutic target in BC. These findings could have implications in other cancer types.
机译:SQLE编码角鲨烯环氧酶,这是胆固醇合成中的关键酶。在多组学癌症项目中,零星报道了拷贝数驱动的转录本中的SQLE。但是,它的功能相关性从未受到过系统的分析。在这里,我们评估了多种癌症类型之间SQLE拷贝数(CN)和基因表达(GE)的相关性,重点是乳腺癌(BC)的临床病理关联。然后,我们调查了在BC细胞系模型中是否可以观察到SQLE抑制的任何生物学效应。乳腺癌,卵巢癌和结肠直肠癌在22种癌症中的8,783例病例中,CN驱动的GE最高,而BC表现最强。 SQLE过表达在侵袭性BC中更为普遍,并且是不良预后的独立预后因素。通过在描绘SQLE CN和GE多样性的一组BC细胞系中进行SQLE药理抑制和沉默,我们证明了SQLE抑制导致细胞活力与复制剂量相关的下降,并且复制时间显着增加,仅在带有可检测的SQLE成绩单的行。总而言之,我们的结果通过扩增将SQLE定位为真正的代谢癌基因,并确定其为BC的治疗靶标。这些发现可能对其他类型的癌症有影响。

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