The stress sensor GCN2 differentially controls ribosome biogenesis in colon cancer according to the nutritional context.

IF 6.6 2区 医学 Q1 Biochemistry, Genetics and Molecular Biology
Molecular Oncology Pub Date : 2024-09-01 Epub Date: 2023-08-18 DOI:10.1002/1878-0261.13491
Marie Piecyk, Mouna Triki, Pierre-Alexandre Laval, Cedric Duret, Joelle Fauvre, Laura Cussonneau, Christelle Machon, Jerôme Guitton, Nicolas Rama, Benjamin Gibert, Gabriel Ichim, Frederic Catez, Fleur Bourdelais, Sebastien Durand, Jean-Jacques Diaz, Isabelle Coste, Toufic Renno, Serge N Manié, Nicolas Aznar, Stephane Ansieau, Carole Ferraro-Peyret, Cedric Chaveroux
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引用次数: 0

Abstract

Nutrient availability is a key determinant of tumor cell behavior. While nutrient-rich conditions favor proliferation and tumor growth, scarcity, and particularly glutamine starvation, promotes cell dedifferentiation and chemoresistance. Here, linking ribosome biogenesis plasticity with tumor cell fate, we uncover that the amino acid sensor general control non-derepressible 2 (GCN2; also known as eIF-2-alpha kinase 4) represses the expression of the precursor of ribosomal RNA (rRNA), 47S, under metabolic stress. We show that blockade of GCN2 triggers cell death by an irremediable nucleolar stress and subsequent TP53-mediated apoptosis in patient-derived models of colon adenocarcinoma (COAD). In nutrient-rich conditions, a cell-autonomous GCN2 activity supports cell proliferation by stimulating 47S rRNA transcription, independently of the canonical integrated stress response (ISR) axis. Impairment of GCN2 activity prevents nuclear translocation of methionyl-tRNA synthetase (MetRS), resulting in nucleolar stress, mTORC1 inhibition and, ultimately, autophagy induction. Inhibition of the GCN2-MetRS axis drastically improves the cytotoxicity of RNA polymerase I (RNA pol I) inhibitors, including the first-line chemotherapy oxaliplatin, on patient-derived COAD tumoroids. Our data thus reveal that GCN2 differentially controls ribosome biogenesis according to the nutritional context. Furthermore, pharmacological co-inhibition of the two GCN2 branches and RNA pol I activity may represent a valuable strategy for elimination of proliferative and metabolically stressed COAD cells.

应激传感器GCN2根据营养环境对结肠癌中核糖体生物发生的控制存在差异。
营养供应是决定肿瘤细胞行为的关键因素。营养丰富的条件有利于细胞增殖和肿瘤生长,而营养匮乏,尤其是谷氨酰胺饥饿,则会促进细胞的去分化和化疗抵抗。在这里,我们将核糖体生物发生的可塑性与肿瘤细胞的命运联系起来,发现氨基酸传感器一般控制非去极化2(GCN2;又称eIF-2-α激酶4)在代谢压力下抑制核糖体RNA(rRNA)前体47S的表达。我们的研究表明,在结肠腺癌(COAD)患者衍生模型中,阻断 GCN2 会引发细胞死亡,因为细胞核应激和随后 TP53 介导的细胞凋亡是无法补救的。在营养丰富的条件下,细胞自主的 GCN2 活性通过刺激 47S rRNA 转录支持细胞增殖,而不依赖于典型的综合应激反应(ISR)轴。GCN2 活性受损会阻止蛋氨酰-tRNA 合成酶(MetRS)的核转位,从而导致细胞核应激、mTORC1 抑制并最终诱导自噬。抑制 GCN2-MetRS 轴可显著提高 RNA 聚合酶 I(RNA pol I)抑制剂(包括一线化疗药物奥沙利铂)对源自患者的 COAD 肿瘤的细胞毒性。因此,我们的数据揭示了 GCN2 可根据营养环境的不同控制核糖体的生物发生。此外,药理上共同抑制 GCN2 的两个分支和 RNA pol I 的活性可能是消除增殖和代谢紧张的 COAD 细胞的一种有价值的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Molecular Oncology
Molecular Oncology Biochemistry, Genetics and Molecular Biology-Molecular Medicine
CiteScore
11.80
自引率
1.50%
发文量
203
审稿时长
10 weeks
期刊介绍: Molecular Oncology highlights new discoveries, approaches, and technical developments, in basic, clinical and discovery-driven translational cancer research. It publishes research articles, reviews (by invitation only), and timely science policy articles. The journal is now fully Open Access with all articles published over the past 10 years freely available.
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