HIF1A型
生物
细胞生长
癌症研究
转移
染色质免疫沉淀
细胞迁移
细胞
细胞生物学
基因表达
癌症
血管生成
基因
遗传学
发起人
作者
Jing Ji,Yasong Wang,Aixin Jing,Ling Ma,Jiayan Yang,Dexu Ren,Jinyu Lv,Mingxiao Lv,Menghan Xu,Qing Yuan,Xinhui Ma,Qilan Qian,Weiling Wang,Ting Geng,Yuanyuan Ding,Jingting Qin,Yuan-Yuan Liu,Jiaojiao Zhou,Lingyi Zuo,Shaojie Ma
出处
期刊:Heliyon
[Elsevier BV]
日期:2024-03-22
卷期号:10 (7): e28440-e28440
被引量:1
标识
DOI:10.1016/j.heliyon.2024.e28440
摘要
IntroductionMitochondrial fission process 1 (MTFP1) is an inner mitochondrial membrane (IMM) protein implicated in the development and progression of various tumors, particularly lung squamous cell carcinoma (LUSC). This study aims to provide a more theoretical basis for the treatment of LUSC.MethodsThrough bioinformatics analysis, MTFP1 was identified as a novel target gene of HIF1A. MTFP1 expression in LUSC was examined using The Cancer Genome Atlas (TCGA), Gene Expression Omnibus (GEO), and Proteomics Data Commons (PDC) databases. The Kaplan-Meier plotter (KM plotter) database was utilized to evaluate its correlation with patient survival. Western blot and chromatin immunoprecipitation (ChIP) assays were employed to confirm the regulatory relationship between MTFP1 and HIF1A. Additionally, cell proliferation, colony formation, and migration assays were conducted to investigate the mechanism by which MTFP1 enhances LUSC cell proliferation and metastasis.ResultsOur findings revealed that MTFP1 overexpression correlated with poor prognosis in LUSC patients(P < 0.05). Moreover, MTFP1 was closely associated with hypoxia and glycolysis in LUSC (R = 0.203; P < 0.001, R = 0.391; P < 0.001). HIF1A was identified as a positive regulator of MTFP1. Functional enrichment analysis demonstrated that MTFP1 played a role in controlling LUSC cell proliferation. Cell proliferation, colony formation, and migration assays indicated that MTFP1 promoted LUSC cell proliferation and metastasis by activating the glycolytic pathway (P < 0.05).ConclusionsThis study establishes MTFP1 as a novel HIF1A target gene that promotes LUSC growth by activating the glycolytic pathway. Investigating MTFP1 may contribute to the development of effective therapies for LUSC patients, particularly those lacking targeted oncogene therapies.
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