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SHMT1 knockdown induces apoptosis in lung cancer cells by causing uracil misincorporation

机译:SHMT1敲低通过引起尿嘧啶错误掺入诱导肺癌细胞凋亡

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Reprogramming of cellular metabolism towards de novo serine production fuels the growth of cancer cells, providing essential precursors such as amino acids and nucleotides and controlling the antioxidant and methylation capacities of the cell. The enzyme serine hydroxymethyltransferase (SHMT) has a key role in this metabolic shift, and directs serine carbons to one-carbon units metabolism and thymidilate synthesis. While the mitochondrial isoform of SHMT (SHMT2) has recently been identified as an important player in the control of cell proliferation in several cancer types and as a hot target for anticancer therapies, the role of the cytoplasmic isoform (SHMT1) in cancerogenesis is currently less defined. In this paper we show that SHMT1 is overexpressed in tissue samples from lung cancer patients and lung cancer cell lines, suggesting that, in this widespread type of tumor, SHMT1 plays a relevant role. We show that SHMT1 knockdown in lung cancer cells leads to cell cycle arrest and, more importantly, to p53-dependent apoptosis. Our data demonstrate that the induction of apoptosis does not depend on serine or glycine starvation, but is because of the increased uracil accumulation during DNA replication.
机译:将细胞代谢重编程为从头生产丝氨酸可促进癌细胞的生长,提供必需的前体,例如氨基酸和核苷酸,并控制细胞的抗氧化剂和甲基化能力。丝氨酸羟甲基转移酶(SHMT)在这种代谢转变中起关键作用,并将丝氨酸碳引导至一个碳单位的代谢和胸苷合成。虽然最近已确定SHMT的线粒体同工型(SHMT2)是控制几种癌症类型中细胞增殖的重要参与者,并且是抗癌疗法的热门目标,但目前细胞质同工型(SHMT1)在癌症发生中的作用尚不多定义。在本文中,我们显示SHMT1在肺癌患者和肺癌细胞系的组织样本中过表达,这表明SHMT1在这种广泛分布的肿瘤中起着相关的作用。我们表明在肺癌细胞中SHMT1敲低导致细胞周期停滞,更重要的是,导致p53依赖性细胞凋亡。我们的数据表明凋亡的诱导并不依赖于丝氨酸或甘氨酸饥饿,而是由于DNA复制过程中尿嘧啶积累的增加。

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