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LPAR5 通过 ERK/Snail 通路赋予 EMT 激活相关的癌细胞放射抗性。

LPAR5 confers radioresistance to cancer cells associated with EMT activation via the ERK/Snail pathway.

机构信息

College of Public Health, Hengyang Medical School, University of South China, Hengyang, 421001, Hunan, People's Republic of China.

Department of Radiation Biology, Beijing Key Laboratory for Radiobiology, Beijing Institute of Radiation Medicine, Beijing, 100850, People's Republic of China.

出版信息

J Transl Med. 2022 Oct 5;20(1):456. doi: 10.1186/s12967-022-03673-4.

Abstract

BACKGROUND

Epithelial-to-mesenchymal transition (EMT) is a critical event contributing to more aggressive phenotypes in cancer cells. EMT is frequently activated in radiation-targeted cells during the course of radiotherapy, which often endows cancers with acquired radioresistance. However, the upstream molecules driving the signaling pathways of radiation-induced EMT have not been fully delineated.

METHODS

In this study, RNA-seq-based transcriptome analysis was performed to identify the early responsive genes of HeLa cells to γ-ray irradiation. EMT-associated genes were knocked down by siRNA technology or overexpressed in HeLa cells and A549 cells, and the resulting changes in phenotypes of EMT and radiosensitivity were assessed using qPCR and Western blotting analyses, migration assays, colony-forming ability and apoptosis of flow cytometer assays.

RESULTS

Through RNA-seq-based transcriptome analysis, we found that LPAR5 is downregulated in the early response of HeLa cells to γ-ray irradiation. Radiation-induced alterations in LPAR5 expression were further revealed to be a bidirectional dynamic process in HeLa and A549 cells, i.e., the early downregulating phase at 2 ~ 4 h and the late upregulating phase at 24 h post-irradiation. Overexpression of LPAR5 prompts EMT programing and migration of cancer cells. Moreover, increased expression of LPAR5 is significantly associated with IR-induced EMT and confers radioresistance to cancer cells. Knockdown of LPAR5 suppressed IR-induced EMT by attenuating the activation of ERK signaling and downstream Snail, MMP1, and MMP9 expression.

CONCLUSIONS

LPAR5 is an important upstream regulator of IR-induced EMT that modulates the ERK/Snail pathway. This study provides further insights into understanding the mechanism of radiation-induced EMT and identifies promising targets for improving the effectiveness of cancer radiation therapy.

摘要

背景

上皮间质转化(EMT)是促进癌细胞向侵袭性表型发展的关键事件。在放射治疗过程中,辐射靶向细胞中 EMT 经常被激活,这往往使癌症获得获得性放射抵抗。然而,驱动辐射诱导的 EMT 信号通路的上游分子尚未完全阐明。

方法

本研究通过 RNA-seq 进行基于转录组的分析,以鉴定 HeLa 细胞对 γ 射线照射的早期反应基因。通过 siRNA 技术敲低 EMT 相关基因或在 HeLa 细胞和 A549 细胞中过表达,使用 qPCR 和 Western blot 分析、迁移实验、集落形成能力和流式细胞术检测细胞凋亡来评估 EMT 和放射敏感性的表型变化。

结果

通过基于 RNA-seq 的转录组分析,我们发现 LPAR5 在 HeLa 细胞对 γ 射线照射的早期反应中下调。进一步揭示,LPAR5 表达的辐射诱导改变是 HeLa 和 A549 细胞中一个双向动态过程,即在照射后 2~4 h 的早期下调阶段和 24 h 的晚期上调阶段。LPAR5 的过表达促使癌细胞 EMT 程序和迁移。此外,LPAR5 的表达增加与 IR 诱导的 EMT 显著相关,并赋予癌细胞放射抵抗性。LPAR5 的敲低通过减弱 ERK 信号的激活和下游 Snail、MMP1 和 MMP9 的表达来抑制 IR 诱导的 EMT。

结论

LPAR5 是 IR 诱导的 EMT 的重要上游调节剂,调节 ERK/Snail 通路。本研究为深入了解辐射诱导的 EMT 机制提供了依据,并为提高癌症放射治疗的效果提供了有前景的靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/53c8/9533496/1898e793ea69/12967_2022_3673_Fig1a_HTML.jpg

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