E2F8激活spc25介导的谷氨酰胺代谢促进肺腺癌免疫逃逸的机制研究

IF 4.9 3区 医学 Q2 IMMUNOLOGY Immunology Pub Date : 2025-01-19 DOI:10.1111/imm.13894
Machang Luo, Lingyan Xie, Baoyan Lin, Xia Su, Rongzhang Liang, Zhiyi Ma, Youtang Li
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引用次数: 0

摘要

肿瘤细胞免疫浸润与纺锤极成分25 (SPC25)有关。本研究旨在探讨SPC25在肺腺癌(LUAD)免疫逃逸中的作用及其分子机制。采用The Cancer Genome Atlas (TCGA)数据库检测SPC25在LUAD中的表达,并采用RT-qPCR对结果进行验证。本研究包括利用CD8+ T淋巴细胞对SPC25进行免疫浸润分析,对SPC25富集的信号通路进行基因集富集分析(GSEA),鉴定SPC25可能的调控分子,并通过双荧光素酶和ChIP试验进行确认。为了评估LUAD细胞的免疫逃逸能力,采用共培养技术。测定谷氨酰胺摄取、谷氨酸和α-酮戊二酸水平、NADPH/NADP和GSH/GSSG比值以及SLC1A5表达来评估谷氨酰胺代谢水平。LUAD增加了SPC25的表达。在LUAD细胞中,SPC25的敲低促进了免疫逃逸,而过表达则具有相反的作用。GSEA分析显示在谷氨酰胺代谢途径中有SPC25富集。通过SPC25过表达导致谷氨酰胺代谢增加,LUAD的免疫逃逸得到改善,并可通过GPNA治疗减轻。E2F8也被证明是与SPC25相关的转录因子,它们表现出结合相互作用。通过SPC25抑制谷氨酰胺代谢,敲低E2F8可阻止LUAD细胞的免疫逃逸。另一方面,过度表达SPC25可以克服E2F8敲低对LUAD细胞免疫逃逸的抑制。在LUAD中,E2F8刺激SPC25表达,促进谷氨酰胺代谢,促进免疫逃逸。我们的研究验证了LUAD细胞中由SPC25驱动的一种新的免疫逃逸途径,为LUAD患者提供了潜在有效的免疫治疗方法。
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Mechanism Study of E2F8 Activation of SPC25-Mediated Glutamine Metabolism Promoting Immune Escape in Lung Adenocarcinoma

Tumour cell immune infiltration is linked to spindle pole component 25 (SPC25). The purpose of this work was to examine the function and molecular mechanism of SPC25 in immune escape in lung adenocarcinoma (LUAD). SPC25 expression in LUAD was examined using The Cancer Genome Atlas (TCGA) database, and RT-qPCR was used to confirm the results. The study involved the use of CD8+ T lymphocytes for immunoinfiltration analysis of SPC25, Gene Set Enrichment Analysis (GSEA) analysis of signalling pathways enriched by SPC25, identification of putative regulatory molecules of SPC25, and confirmation through the use of dual-luciferase and ChIP tests. To evaluate LUAD cell capacity for immune escape, a co-culture technique was employed. Measurements of glutamine uptake, glutamate and α-ketoglutarate levels, NADPH/NADP and GSH/GSSG ratios, and SLC1A5 expression were used to assess the levels of glutamine metabolism. LUAD had increased SPC25 expression. In LUAD cells, immune escape was facilitated by SPC25 knockdown, whereas overexpression had the reverse effect. SPC25 enrichment in the glutamine metabolism pathway was shown by GSEA analysis. Through increased glutamine metabolism brought on by SPC25 overexpression, immune escape was improved in LUAD and could be mitigated by GPNA therapy. E2F8 was also shown to be the transcription factor associated with SPC25, and they showed a binding interaction. By inhibiting glutamine metabolism through SPC25, knocking down E2F8 prevented immune escape in LUAD cells. On the other hand, the suppression of immune escape in LUAD cells caused by E2F8 knockdown was overcome by overexpression of SPC25. In LUAD, E2F8 stimulates SPC25 expression to facilitate glutamine metabolism and encourage immune escape. Our research validates a novel immune escape pathway driven by SPC25 in LUAD cells, providing LUAD patients with potentially effective immunotherapeutic approaches.

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来源期刊
Immunology
Immunology 医学-免疫学
CiteScore
11.90
自引率
1.60%
发文量
175
审稿时长
4-8 weeks
期刊介绍: Immunology is one of the longest-established immunology journals and is recognised as one of the leading journals in its field. We have global representation in authors, editors and reviewers. Immunology publishes papers describing original findings in all areas of cellular and molecular immunology. High-quality original articles describing mechanistic insights into fundamental aspects of the immune system are welcome. Topics of interest to the journal include: immune cell development, cancer immunology, systems immunology/omics and informatics, inflammation, immunometabolism, immunology of infection, microbiota and immunity, mucosal immunology, and neuroimmunology. The journal also publishes commissioned review articles on subjects of topical interest to immunologists, and commissions in-depth review series: themed sets of review articles which take a 360° view of select topics at the heart of immunological research.
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