基因敲除
癌基因
医学
细胞生长
肿瘤微环境
上皮-间质转换
细胞周期
内科学
生物
微阵列分析技术
癌症研究
癌症
细胞迁移
肿瘤进展
细胞培养
转移
基因表达
基因
生物化学
遗传学
肿瘤细胞
作者
Hiroyuki Inoue,Atsushi Shiozaki,Toshiyuki Kosuga,Hiroki Shimizu,Michihiro Kudou,Tomohiro Arita,Hirotaka Konishi,Shuhei Komatsu,Yoshiaki Kuriu,Takeshi Kubota,Hitoshi Fujiwara,Yukiko Morinaga,Eiichi Konishi,Eigo Otsuji
标识
DOI:10.1007/s00535-024-02095-x
摘要
BACKGROUND: Calcium voltage-gated channel auxiliary subunit alpha 2/delta 1 (CACNA2D1), a gene encoding a voltage-gated calcium channel, has been reported as an oncogene in several cancers. However, its role in colon cancer (CC) remains unclear. This study aimed to investigate the function of CACNA2D1 and its effect on the microenvironment in CC. METHODS: Immunohistochemistry (IHC) analysis was performed on samples collected from 200 patients with CC who underwent curative colectomy. Knockdown experiments were performed using CACNA2D1 siRNA in the human CC cell lines HCT116 and RKO, and cell proliferation, cycle, apoptosis, and migration were then analyzed. The fibroblast cell line CCD-18Co was co-cultured with CC cell lines to determine the effect of CACNA2D1 on fibroblasts and the relationship between CACNA2D1 and the cancer microenvironment. Gene expression profiles of cells were analyzed using microarray analysis. RESULTS: IHC revealed that high CACNA2D1 expression was an independent poor prognostic factor in patients with CC and that CACNA2D1 expression and the stroma are correlated. CACNA2D1 depletion decreased cell proliferation and migration; CACNA2D1 knockdown increased the number of cells in the sub-G1 phase and induced apoptosis. CCD-18Co and HCT116 or RKO cell co-culture revealed that CACNA2D1 affects the cancer microenvironment via fibroblast regulation. Furthermore, microarray analysis showed that the p53 signaling pathway and epithelial-mesenchymal transition-associated pathways were enhanced in CACNA2D1-depleted HCT116 cells. CONCLUSIONS: CACNA2D1 plays an important role in the progression and the microenvironment of CC by regulating fibroblasts and may act as a biomarker for disease progression and a therapeutic target for CC.
科研通智能强力驱动
Strongly Powered by AbleSci AI