ALKBH5 Facilitates Hypoxia-Induced Paraspeckle Assembly and IL8 Secretion to Generate an Immunosuppressive Tumor Microenvironment

肿瘤微环境 生物 癌症研究 白细胞介素8 下调和上调 缺氧(环境) 肿瘤进展 肿瘤缺氧 分泌物 细胞生物学 免疫学 免疫系统 癌症 细胞因子 内科学 内分泌学 化学 医学 生物化学 有机化学 遗传学 放射治疗 氧气 基因
作者
Feng Dong,Xiaoyang Qin,Baofeng Wang,Qian Li,Jinyang Hu,Xuan Cheng,Dongsheng Guo,Fangling Cheng,Chuan Fang,Yanli Tan,Han Yan,You He,Xiaoyu Sun,Ye Yuan,Hang Liu,Ting Li,Yingying Zhao,Chunsheng Kang,Xudong Wu
出处
期刊:Cancer Research [American Association for Cancer Research]
卷期号:81 (23): 5876-5888 被引量:116
标识
DOI:10.1158/0008-5472.can-21-1456
摘要

The dynamic changes of RNA N6-methyl-adenosine (m6A) during cancer progression contribute to quick adaption to microenvironmental changes. Here, we profiled the cancer cell m6A dynamics in the hypoxic tumor niche and its pathological consequences in glioblastoma multiforme (GBM). The m6A demethylase ALKBH5 was induced in GBM models under hypoxic conditions and was associated with a hypoxic gene signature in GBM patient samples. Depletion or inactivation of ALKBH5 in GBM cells significantly suppressed hypoxia-induced tumor-associated macrophage (TAM) recruitment and immunosuppression in allograft tumors. Expression and secretion of CXCL8/IL8 were significantly suppressed in ALKBH5-deficient tumors. However, ALKBH5 did not regulate CXCL8 m6A directly. Instead, hypoxia-induced ALKBH5 erased m6A deposition from the lncRNA NEAT1, stabilizing the transcript and facilitating NEAT1-mediated paraspeckle assembly, which led to relocation of the transcriptional repressor SFPQ from the CXCL8 promoter to paraspeckles and, ultimately, upregulation of CXCL8/IL8 expression. Accordingly, ectopic expression of CXCL8 in ALKBH5-deficient GBM cells partially restored TAM recruitment and tumor progression. Together, this study links hypoxia-induced epitranscriptomic changes to the emergence of an immunosuppressive microenvironment facilitating tumor evasion. SIGNIFICANCE: Hypoxia induces tumor immune microenvironment remodeling through an ALKBH5-mediated epigenetic and epitranscriptomic mechanism, providing potential immunotherapeutic strategies for treating glioblastoma.
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