Identification and validation of COL6A1 as a novel target for tumor electric field therapy in glioblastoma

Author:

Chen Junyi12ORCID,Liu Yuyang3,Lan Jinxin24ORCID,Liu Hongyu15ORCID,Tang Qingyun6,Li Ze12,Qiu Xiaoguang7,Hu Wentao24ORCID,Xie Jiaxin3,Feng Yaping3,Qin Lilin8,Zhang Xin3,Liu Jialin12ORCID,Chen Ling12

Affiliation:

1. Medical School of Chinese PLA Beijing China

2. Department of Neurosurgery Chinese PLA General Hospital Beijing China

3. Department of Neurosurgery 920th Hospital of Joint Logistics Support Force Kunming China

4. School of Medicine Nankai University Tianjin China

5. Department of Neurosurgery Hainan Hospital of Chinese PLA General Hospital Hainan China

6. Department of Gastroenterology 920th Hospital of Joint Logistics Support Force Kunming China

7. Beijing Tiantan Hospital, Capital Medical University Beijing China

8. Zhejiang Cancer Hospital Zhejiang Hangzhou China

Abstract

AbstractBackgroundGlioblastoma multiforme (GBM) is the most aggressive primary brain malignancy. Novel therapeutic modalities like tumor electric field therapy (TEFT) have shown promise, but underlying mechanisms remain unclear. The extracellular matrix (ECM) is implicated in GBM progression, warranting investigation into TEFT‐ECM interplay.MethodsT98G cells were treated with TEFT (200 kHz, 2.2 V/m) for 72 h. Collagen type VI alpha 1 (COL6A1) was identified as hub gene via comprehensive bioinformatic analysis based on RNA sequencing (RNA‐seq) and public glioma datasets. TEFT intervention models were established using T98G and Ln229 cell lines. Pre‐TEFT and post‐TEFT GBM tissues were collected for further validation. Focal adhesion pathway activity was assessed by western blot. Functional partners of COL6A1 were identified and validated by co‐localization and survival analysis.ResultsTEFT altered ECM‐related gene expression in T98G cells, including the hub gene COL6A1. COL6A1 was upregulated in GBM and associated with poor prognosis. Muti‐database GBM single‐cell analysis revealed high‐COL6A1 expression predominantly in malignant cell subpopulations. Differential expression and functional enrichment analyses suggested COL6A1 might be involved in ECM organization and focal adhesion. Western blot (WB), immunofluorescence (IF), and co‐immunoprecipitation (Co‐IP) experiments revealed that TEFT significantly inhibited expression of COL6A1, hindering its interaction with ITGA5, consequently suppressing the FAK/Paxillin/AKT pathway activity. These results suggested that TEFT might exert its antitumor effects by downregulating COL6A1 and thereby inhibiting the activity of the focal adhesion pathway.ConclusionTEFT could remodel the ECM of GBM cells by downregulating COL6A1 expression and inhibiting focal adhesion pathway. COL6A1 could interact with ITGA5 and activate the focal adhesion pathway, suggesting that it might be a potential therapeutic target mediating the antitumor effects of TEFT.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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