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miR-1269a/PCDHGA9/CXCR4/β-catenin 通路促进结直肠癌侵袭和转移。

The miR-1269a/PCDHGA9/CXCR4/β-catenin pathway promotes colorectal cancer invasion and metastasis.

机构信息

Department of Gastrointestinal Surgery, Shanghai Municipal Hospital of Traditional Chinese Medicine, Shanghai University of Traditional Chinese Medicine, 274 Zhijiang Middle Road, Shanghai, 200071, China.

Department of General Surgery, Shanghai General Hospital, Shanghai Jiao Tong University School of Medicine, 85 Wujin Road, Shanghai, 200080, China.

出版信息

Cell Mol Biol Lett. 2024 Nov 26;29(1):144. doi: 10.1186/s11658-024-00656-9.

Abstract

BACKGROUND

Colorectal cancer (CRC) is the third most common cancer worldwide and the second leading cause of cancer-related death. This research focuses on investigating the impact and underlying molecular mechanisms of protocadherin gamma subfamily A, 9 (PCDHGA9) on the invasion and metastasis of CRC, aiming to identify more precise molecular markers for the diagnosis and prognosis of CRC.

METHODS

PCDHGA9 expression was detected using quantitative real-time quantitative polymerase chain reaction (RT-qPCR) in 63 pairs of colorectal cancer tissues. Differential gene expression from high-throughput sequencing was analyzed using ingenuity pathway analysis (IPA) to explore the biological functions of PCDHGA9 and its potential regulated genes. Bioinformatics tools were employed to explore potential upstream regulatory microRNAs of PCDHGA9. Dual-luciferase assays were performed to demonstrate the regulation between PCDHGA9 and miR-1269a. Protein mass spectrometry suggested an interaction between PCDHGA9 and HOXA1. JASPAR predicted that HOXA1 may act as a transcription factor of CXCR4. Coimmunoprecipitation, dual-luciferase assays, and nuclear-cytoplasmic fractionation experiments confirmed the molecular mechanism involving PCDHGA9, CXCR4, HOXA1, and β-catenin. Transwell, wound healing, and western blot assays were conducted to confirm the impact of PCDHGA9, miR-1269a, and CXCR4 on the invasion, metastasis, and epithelial-mesenchymal transition (EMT) functions of CRC cells in in vitro experiments. A whole-body fluorescence imaging system was used to evaluate the combined impact of miR-1269a and PCDHGA9 on the invasion and metastasis of CRC in in vivo experiments.

RESULTS

The expression of PCDHGA9 was found to be lower in CRC tissues compared with their corresponding adjacent tissues. Low expression of PCDHGA9 potentially correlated with worse prognosis and increased chances of invasion and metastasis in CRC. miR-1269a was highly expressed in CRC tissues and acted as a negative regulator for PCDHGA9, promoting invasion, migration, and EMT of CRC cells. PCDHGA9's interaction with HOXA1 downregulated CXCR4, a transcription factor, leading to accumulation of β-catenin and further promoting invasion, migration, and EMT of CRC cells.

CONCLUSIONS

PCDHGA9, acting as a tumor suppressor, is downregulated by miR-1269a. The low level of PCDHGA9 activates the Wnt/β-catenin pathway by releasing its interaction with HOXA1, promoting the expression of CXCR4, and causing invasion, migration, and EMT in CRC.

摘要

背景

结直肠癌(CRC)是全球第三大常见癌症,也是癌症相关死亡的第二大主要原因。本研究旨在探讨原钙黏蛋白γ亚家族 A、9(PCDHGA9)对 CRC 侵袭和转移的影响及其潜在的分子机制,旨在为 CRC 的诊断和预后寻找更精确的分子标志物。

方法

采用实时定量聚合酶链反应(RT-qPCR)检测 63 对结直肠癌组织中 PCDHGA9 的表达。采用 Ingenuity 通路分析(IPA)对高通量测序的差异基因表达进行分析,以探讨 PCDHGA9 及其潜在调控基因的生物学功能。采用生物信息学工具探索 PCDHGA9 的潜在上游调控 microRNA。采用双荧光素酶报告基因实验验证 PCDHGA9 与 miR-1269a 之间的调控关系。蛋白质质谱提示 PCDHGA9 与 HOXA1 之间存在相互作用。JASPAR 预测 HOXA1 可能作为 CXCR4 的转录因子。免疫共沉淀、双荧光素酶报告基因实验和核质分离实验证实了涉及 PCDHGA9、CXCR4、HOXA1 和 β-catenin 的分子机制。Transwell、划痕愈合和 Western blot 实验证实了 PCDHGA9、miR-1269a 和 CXCR4 对 CRC 细胞体外侵袭、转移和上皮-间充质转化(EMT)功能的影响。全身荧光成像系统用于评估 miR-1269a 和 PCDHGA9 对 CRC 体内侵袭和转移的联合影响。

结果

与相应的相邻组织相比,CRC 组织中 PCDHGA9 的表达较低。PCDHGA9 低表达可能与 CRC 的预后不良和侵袭转移机会增加有关。CRC 组织中 miR-1269a 表达较高,作为 PCDHGA9 的负调节剂,促进 CRC 细胞的侵袭、迁移和 EMT。PCDHGA9 与 HOXA1 的相互作用下调 CXCR4 的转录因子,导致 β-catenin 的积累,进一步促进 CRC 细胞的侵袭、迁移和 EMT。

结论

PCDHGA9 作为肿瘤抑制因子,被 miR-1269a 下调。PCDHGA9 水平降低通过释放其与 HOXA1 的相互作用激活 Wnt/β-catenin 通路,促进 CXCR4 的表达,导致 CRC 的侵袭、迁移和 EMT。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf83/11590219/9d183b60e03c/11658_2024_656_Fig1_HTML.jpg

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