crispr编辑的AMPK激酶LKB1亚型改善了A549肺癌细胞对顺铂的反应。

IF 4 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Biological Chemistry Pub Date : 2025-03-01 Epub Date: 2025-02-13 DOI:10.1016/j.jbc.2025.108308
Matheus Brandemarte Severino, Ana Paula Morelli, Isadora Carolina Betim Pavan, Mariana Camargo Silva Mancini, Mariana Marcela Góis, Rafael Junqueira Borges, Renata Rosseto Braga, Luiz Guilherme Salvino da Silva, Nathalia Quintero-Ruiz, Maíra Maftoum Costa, Wesley de Lima Oliveira, Rosângela Maria Neves Bezerra, Eduardo Rochete Ropelle, Fernando Moreira Simabuco
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引用次数: 0

摘要

与其他类型的癌症相比,肺癌是世界上死亡率最高的癌症,并且经常出现对顺铂的化疗耐药性。A549非小细胞肺癌(NSCLC)系因其具有高增殖率和STK11基因无意义突变而被广泛用作肺腺癌研究的模型。由STK11基因编码的LKB1蛋白是营养剥夺下通过AMPK激活细胞代谢的主要调节因子之一。A549细胞中STK11基因的突变增强了癌症特征,如细胞代谢的失调,除了Warburg效应,mTOR激活,自噬抑制,NRF2和氧化还原激活。在这项研究中,我们研究了这些与LKB1/AMPK代谢调节相关的途径的整合,以改善A549细胞系的顺铂反应。我们首先使用CRISPR/Cas9系统生成具有CRISPR编辑的LKB1亚型(称为Super LKB1)的细胞系,通过在NHEJ介导的修复后在STK11基因的第一个外显子中引入+1腺嘌呤插入来实现。这种插入导致高分子量蛋白的表达,该蛋白含有Peutz-Jeghers综合征(PJS)中描述的另一个外显子。通过Super LKB1表达和AMPK激活的代谢调节,我们发现WT A549细胞的自噬通量(LC3 GFP/RFP p2O2)增加,可能是NRF2激活的结果,顺铂达到IC50 (WT: 10 μM;c2SL+: 5.5 μM;c3SL+: 6 μM)。本研究的数据表明,新型Super LKB1对A549细胞中与代谢、mTORC1和自噬相关的分子通路的调控促进了肺癌细胞对顺铂的更好反应。这种基于nhej - crispr的方法可能潜在地用于肺癌基因治疗。
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A CRISPR-edited isoform of the AMPK kinase LKB1 improves the response to cisplatin in A549 lung cancer cells.

Lung cancer presents the highest mortality rate in the world when compared to other cancer types and often presents chemotherapy resistance to cisplatin. The A549 nonsmall cell lung cancer line is widely used as a model for lung adenocarcinoma studies since it presents a high proliferative rate and a nonsense mutation in the STK11 gene. The LKB1 protein, encoded by the STK11 gene, is one of the major regulators of cellular metabolism through AMPK activation under nutrient deprivation. Mutation in the STK11 gene in A549 cells potentiates cancer hallmarks, such as deregulation of cellular metabolism, aside from the Warburg effect, mTOR activation, autophagy inhibition, and NRF2 and redox activation. In this study, we investigated the integration of these pathways associated with the metabolism regulation by LKB1/AMPK to improve cisplatin response in the A549 cell line. We first used the CRISPR/Cas9 system to generate cell lines with a CRISPR-edited LKB1 isoform (called Super LKB1), achieved through the introduction of a +1 adenine insertion in the first exon of the STK11 gene after NHEJ-mediated repair. This insertion led to the expression of a higher molecular weight protein containing an alternative exon described in the Peutz-Jeghers Syndrome. Through metabolic regulation by Super LKB1 expression and AMPK activation, we found an increase in autophagy flux (LC3 GFP/RFP p < 0.05), as well as a reduction in the phosphorylation of mTORC1 downstream targets (S6K2 phospho-serine 423; p < 0.05; and S6 ribosomal protein phospho-serine 240/244; p < 0.03). The NRF2 protein exhibited increased levels and more nuclear localization in A549 WT cells compared to the edited cells (p < 0.01). We also observed lower levels of H2O2 in the WT A549 cells, as a possible result of NRF2 activation, and a higher requirement of cisplatin to achieve the IC50 (WT: 10 μM; c2SL+: 5.5 μM; c3SL+: 6 μM). The data presented here suggests that the regulation of molecular pathways by the novel Super LKB1 in A549 cells related to metabolism, mTORC1, and autophagy promotes a better response of lung cancer cells to cisplatin. This NHEJ-CRISPR-based approach may be potentially used for lung cancer gene therapy.

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Journal of Biological Chemistry
Journal of Biological Chemistry Biochemistry, Genetics and Molecular Biology-Biochemistry
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