为肝细胞癌武装 GPC3 CAR-T 细胞:多少才足够,下一步是什么?
Armouring GPC3 CAR T cells for hepatocellular carcinoma: how much is enough and what comes next?
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:GLIS1 intervention enhances anti-PD1 therapy for hepatocellular carcinoma by targeting SGK1-STAT3-PD1 pathway.
GLIS1 intervention enhances anti-PD1 therapy for hepatocellular carcinoma by targeting SGK1-STAT3-PD1 pathway.
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我们的研究揭示,GLIS1 通过转录调控 SGK1-STAT3-PD1 通路促进 HCC 中 CD8+ T 细胞耗竭。下调 CD8+ T 细胞中 GLIS1 的表达与抗 PD1 治疗协同发挥作用,揭示了一种 HCC 免疫治疗的前瞻性方法。
GLI-similar 1 (GLIS1) 是 Krüppel 样锌指蛋白之一,这类蛋白对基因转录具有刺激或抑制作用。然而,其对 T 细胞的影响尚不清楚。
在本研究中,我们旨在探讨GLIS1对肝细胞癌(HCC)中CD8+ T细胞抗癌效力的调节作用。通过定量实时PCR和流式细胞术验证了GLIS1在HCC组织CD8外周血单核细胞和CD8TIL(肿瘤浸润淋巴细胞)中的表达。在C57BL/6小鼠模型和HCC患者来源异种移植小鼠模型中证实了GLIS1敲低后CD8+ T细胞的抗癌效力。应用GLIS1-/- C57BL/6小鼠探讨GLIS1对肿瘤免疫微环境的影响。在GLIS1敲低的CD8+ T细胞中进行了染色质免疫沉淀和RNA转录组测序分析。
GLIS1在HCC中耗竭的CD8+ T细胞中上调。CD8+ T细胞中GLIS1的下调抑制了癌症发展,提高了CD8+ T细胞的浸润能力,减轻了CD8+ T细胞耗竭,并改善了HCC中CD8+ T细胞的抗PD1反应。其背后的因果联系包括GLIS1对SGK1-STAT3-PD1通路的转录调控,从而维持CD8+ T细胞表面PD1的高表达。
GLI-similar 1 (GLIS1) is one of of Krüppel-like zinc finger proteins, which are either stimulators or inhibitors of genetic transcription. Nevertheless, its effects on T cell were elusive.
In this study, we intend to explore the effects of GLIS1 on modulating the anticancer potency of CD8 + T cells in hepatocellular carcinoma (HCC). The expression of GLIS1 in CD8 peripheral blood mononuclear cell and CD8 tumor-infiltrating lymphocytes of HCC tissues was validated by quantificational real-time-PCR and flow cytometry. The anticancer potency of CD8 + T cells with GLIS1 knock down was confirmed in C57BL/6 mouse model and HCC patient-derived xenograft mice model. GLIS1 -/- C57BL/6 mice was applied to explore the effects GLIS1 on tumor immune microenvironment. Chromatin immunoprecipitation and RNA transcriptome sequencing analysis were both performed in GLIS1-knock down of CD8 + T cells.
GLIS1 was upregulated in exhausted CD8 + T cells in HCC. GLIS1 downregulation in CD8 + T cells repressed cancer development, elevated the infiltrate ability of CD8 + T cells, mitigated CD8 + T cell exhaustion and ameliorated the anti-PD1 reaction of CD8 + T cells in HCC. The causal link beneath this included transcriptional regulation of SGK1-STAT3-PD1 pathway by GLIS1, thereby maintaining the abundant PD1 expression on the surface of CD8 + T cells.
Our study revealed that GLIS1 promoted CD8 + T cell exhaustion in HCC through transcriptional regulating SGK1-STAT3-PD1 pathway. Downregulating the expression of GLIS1 in CD8 + T cells exerted an effect with anti-PD1 treatment synergistically, revealing a prospective method for HCC immune therapy.
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