The impact of SOX4‐activated CTHRC1 transcriptional activity regulating DNA damage repair on cisplatin resistance in lung adenocarcinoma

Author:

Ai Cheng12,Huang Zhenhao1,Rong Tenghao1,Shen Wang3,Yang Fuyu1,Li Qiang1,Bi Lei1,Li Wen3ORCID

Affiliation:

1. Department of Cardiothoracic Surgery Bishan Hospital of Chongqing, Medical University Chongqing P. R. China

2. Department of Thoracic Surgery, Nanjing Drum Tower Hospital The affiliated Hospital of Nanjing University Medical School Nanjing P. R. China

3. Lung Cancer Center West China Hospital of Sichuan University Chengdu P. R. China

Abstract

AbstractLung adenocarcinoma (LUAD) is the predominant subtype within the spectrum of lung malignancies. CTHRC1 has a pro‐oncogenic role in various cancers. Here, we observed the upregulation of CTHRC1 in LUAD, but its role in cisplatin resistance in LUAD remains unclear. Bioinformatics analysis was employed to detect CTHRC1 and SRY‐related HMG‐box 4 (SOX4) expression in LUAD. Gene Set Enrichment Analysis predicted the enriched pathways related to CTHRC1. JASPAR and MotifMap databases predicted upstream transcription factors of CTHRC1. Pearson analysis was conducted to analyze the correlation between genes of interest. The interaction and binding relationship between CTHRC1 and SOX4 were validated through dual‐luciferase and chromatin immunoprecipitation assays. Quantitative real‐time polymerase chain reaction determined the expression of CTHRC1 and SOX4 genes. CCK‐8 was performed to assess cell viability and calculate IC50 value. Flow cytometry examined the cell cycle. Comet assay and western blot assessed DNA damage. CTHRC1 and SOX4 were upregulated in LUAD. CTHRC1 exhibited higher expression in cisplatin‐resistant A549 cells compared to cisplatin‐sensitive A549 cells. Knockdown of CTHRC1 enhanced DNA damage during cisplatin treatment and increased the sensitivity of LUAD cells to cisplatin. Additionally, SOX4 modulated DNA damage repair (DDR) by activating CTHRC1 transcriptional activity, promoting cisplatin resistance in LUAD cells. SOX4 regulated DDR by activating CTHRC1, thereby enhancing cisplatin resistance in LUAD cells. The finding provides a novel approach to address clinical cisplatin resistance in LUAD, with CTHRC1 possibly serving as a candidate for targeted therapies in addressing cisplatin resistance within LUAD.

Publisher

Wiley

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