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ALKBH5 促进缺氧诱导的核小体组装和 IL8 分泌,以产生免疫抑制性肿瘤微环境。

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

机构信息

Department of Neurosurgery, Tianjin Medical University General Hospital and Laboratory of Neuro-Oncology, Tianjin Neurological Institute, Tianjin, China.

Department of Cell Biology, State Key Laboratory of Experimental Hematology, The Province and Ministry Co-sponsored Collaborative Innovation Center for Medical Epigenetics, Key Laboratory of Immune Microenvironment and Disease (Ministry of Education), Tianjin Medical University, Tianjin, China.

出版信息

Cancer Res. 2021 Dec 1;81(23):5876-5888. doi: 10.1158/0008-5472.CAN-21-1456. Epub 2021 Oct 20.

Abstract

The dynamic changes of RNA N6-methyl-adenosine (mA) during cancer progression contribute to quick adaption to microenvironmental changes. Here, we profiled the cancer cell mA dynamics in the hypoxic tumor niche and its pathological consequences in glioblastoma multiforme (GBM). The mA 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 mA directly. Instead, hypoxia-induced ALKBH5 erased mA 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.

摘要

RNA N6-甲基腺苷(m6A)在癌症进展过程中的动态变化有助于快速适应微环境变化。在这里,我们对缺氧肿瘤微环境中的癌细胞 m6A 动态及其在多形性胶质母细胞瘤(GBM)中的病理后果进行了分析。在缺氧条件下,m6A 去甲基酶 ALKBH5 在 GBM 模型中被诱导,并与 GBM 患者样本中的缺氧基因特征相关。在 GBM 细胞中耗尽或失活 ALKBH5 可显著抑制缺氧诱导的肿瘤相关巨噬细胞(TAM)募集和同种异体移植肿瘤中的免疫抑制作用。在缺乏 ALKBH5 的肿瘤中,CXCL8/IL8 的表达和分泌明显受到抑制。然而,ALKBH5 并没有直接调节 CXCL8 m6A。相反,缺氧诱导的 ALKBH5 从 lncRNA NEAT1 上擦除 m6A 沉积,稳定转录本,并促进 NEAT1 介导的核周体组装,导致转录抑制因子 SFPQ 从 CXCL8 启动子转移到核周体,最终上调 CXCL8/IL8 的表达。因此,在缺乏 ALKBH5 的 GBM 细胞中异位表达 CXCL8 部分恢复了 TAM 的募集和肿瘤的进展。总之,这项研究将缺氧诱导的转录后变化与免疫抑制微环境的出现联系起来,促进了肿瘤的逃逸。意义:缺氧通过 ALKBH5 介导的表观遗传学和转录后组学机制诱导肿瘤免疫微环境重塑,为治疗胶质母细胞瘤提供了潜在的免疫治疗策略。

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