RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:KLF4-mediated upregulation of the NKG2D ligand MICA in acute myeloid leukemia: a novel therapeutic target identified by enChIP.
KLF4-mediated upregulation of the NKG2D ligand MICA in acute myeloid leukemia: a novel therapeutic target identified by enChIP.
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免疫受体NKG2D表达于NK细胞和T细胞亚群,在肿瘤免疫监视中发挥关键作用。这尤其适用于急性髓系白血病(AML),该病通过下调NKG2D配体(NKG2D-L),包括MICA,来逃避免疫检测。AML细胞上NKG2D-L的缺失还与白血病干细胞特征相关。
因此,NKG2D/NKG2D-L系统是一个有趣且有前景的治疗靶点。本研究中,我们旨在鉴定可被药理学刺激激活、从而在AML细胞中诱导NKG2D-L MICA表达以恢复抗肿瘤活性的转录因子。利用基于CRISPR工程的ChIP(enChIP)检测MICA启动子区域,并通过基于质谱的蛋白质组学进行读出,我们鉴定出转录因子krüppel样因子4(KLF4)与该启动子相关。
我们证明MICA启动子包含KLF4的功能性结合位点,遗传学及药理学功能获得和功能缺失实验揭示可诱导的MICA表达由KLF4介导。
此外,使用小分子化合物APTO253(一种KLF4激活剂)可在AML细胞中实现诱导,该化合物还抑制MYC表达并引起DNA损伤。这种诱导进而导致MICA表达和细胞表面呈递增加,从而使AML细胞更易被NK细胞介导的杀伤。这些数据揭示了APTO253与先天抗肿瘤免疫应答之间的新联系,为通过APTO253依赖性KLF4/MICA诱导靶向AML细胞、使其在体内被内源性或移植的NK细胞和T细胞清除提供了依据。视频摘要。
The immunoreceptor NKG2D, which is expressed on NK cells and T cell subsets is critically involved in tumor immune surveillance. This applies in particular to acute myeloid leukemia (AML), which evades immune detection by downregulation of NKG2D ligands (NKG2D-L), including MICA. The absence of NKG2D-L on AML cells is moreover associated with leukemia stem cell characteristics. The NKG2D/NKG2D-L system thus qualifies as an interesting and promising therapeutic target.
Here we aimed to identify transcription factors susceptible to pharmacological stimulation resulting in the expression of the NKG2D-L MICA in AML cells to restore anti-tumor activity. Using a CRISPR-based engineered ChIP (enChIP) assay for the MICA promoter region and readout by mass spectrometry-based proteomics, we identified the transcription factor krüppel-like factor 4 (KLF4) as associated with the promoter.
We demonstrated that the MICA promoter comprises functional binding sites for KLF4 and genetic as well as pharmacological gain- and loss-of-function experiments revealed inducible MICA expression to be mediated by KLF4.
Furthermore, induction in AML cells was achieved with the small compound APTO253, a KLF4 activator, which also inhibits MYC expression and causes DNA damage. This induction in turn yielded increased expression and cell surface presentation of MICA, thus rendering AML cells more susceptible to NK cell-mediated killing.
These data unravel a novel link between APTO253 and the innate anti-tumor immune response providing a rationale for targeting AML cells via APTO253-dependent KFL4/MICA induction to allow elimination by endogenous or transplanted NK and T cells in vivo. Video Abstract.
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