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:tRNA-derived small RNA 3' tRF-Ala CGC obstructs NK cytotoxicity via cleavage of membrane protein MICA in colorectal cancer.
tRNA-derived small RNA 3' tRF-Ala CGC obstructs NK cytotoxicity via cleavage of membrane protein MICA in colorectal cancer.
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我们的发现揭示了 tRF-3021a 作为 CRC 免疫治疗的新型生物标志物和治疗靶点。
免疫逃逸仍是肿瘤免疫治疗面临的主要挑战。转运RNA(tRNA)衍生的小RNA(tsRNA)代表一类由tRNA切割产生的新型非编码RNA,在转录和翻译水平调控基因表达。这些tsRNA表现出多样的生物学功能,包括免疫调节、代谢紊乱和细胞死亡。尽管tsRNA在肿瘤进展中具有关键作用,但其在结直肠癌(CRC)中与免疫逃逸相关的自然杀伤(NK)细胞中的作用尚未被揭示。
利用高通量测序和tRFexplorer数据库比较CRC与正常组织的表达谱。采用RT-qPCR、western blotting和流式细胞术等技术评估基因和蛋白表达。使用CCK-8 assay、集落形成实验和凋亡分析评估肿瘤异质性。通过RNA测序对HCT116细胞中tRF-3021a inhibitor与阴性对照(NC)之间的差异基因表达进行定量和表征。
我们发现 3' tRF-AlaCGC(tRF-3021a)在 CRC 组织中显著上调。主要组织相容性复合体 I 类相关链 A(MICA)是自然杀伤组 2 成员 D 受体(NKG2D)的重要且应激诱导的配体,在多种癌细胞中表达。MICA 经历翻译后修饰,从而调节其表达,因为它们在癌细胞表面被称为膜结合 MICA(mMICA)。mMICA 是一种诱导 NK 细胞活化的配体。mMICA 被解整合素金属蛋白酶结构域(ADAMs)蛋白水解切割是 CRC 中的潜在机制。在机制上,tRF-3021a 通过上调 ADAM10 促进 mMICA 的蛋白水解切割,生成可溶性 MICA(sMICA)。升高的 sMICA 作为 NK 细胞上 NKG2D 受体的诱饵配体,损害细胞毒性并促进免疫逃逸。功能实验证实,敲低 tRF-3021a 增强 NK 细胞介导的 CRC 细胞杀伤,而过表达则促进 CRC 增殖并抑制凋亡。在临床上,tRF-3021a 在 CRC 组织、血清外泌体和细胞系中升高,并被 ANG 切割,显示出诊断潜力。在体内,实验进一步证明抑制 tRF-3021a 可降低致瘤性。
Immune escape remains a major challenge in cancer immunotherapy. Transfer RNA (tRNA)-derived small RNA (tsRNA) represents a novel class of non-coding RNAs generated from tRNA cleavage, regulating gene expression at transcriptional and translational levels. These tsRNAs exhibit diverse biological functions, including immune modulation, metabolic disorders, and cell death. Despite their critical involvement in tumor progression, the role of tsRNAs in Natural killer (NK) cells related to immune escape within colorectal cancer (CRC) has not been revealed yet.
High-throughput sequencing and the tRFexplorer database were utilized to compare the profiles of CRC and normal tissues. Techniques such as RT-qPCR, western blotting, and flow cytometry were employed to assess gene and protein expression. The Cell Counting Kit-8 assay, colony formation assay, and apoptosis analysis were used to evaluate tumor heterogeneity. Differential gene expression between the tRF-3021a inhibitor and negative control (NC) in HCT116 cells was quantified and characterized using RNA sequencing.
We identified 3' tRF-AlaCGC (tRF-3021a) as significantly upregulated in CRC tissues. Major histocompatibility complex class I related chain A (MICA) is an important and stress-induced ligand of the natural killer group 2 member D receptor (NKG2D) that is expressed in various cancer cells. MICA undergoes post-translational modifications that regulate their expression as they are called membrane-bound MICA (mMICA) at the cancer cell surface. mMICA is a ligand that induces the activation of NK cells. Proteolytic cleavage of mMICA by A Disintegrin Metalloproteinase Domains (ADAMs) is the underlying mechanism in CRC. Mechanistically, tRF-3021a promotes proteolytic cleavage of mMICA by upregulating ADAM10, generating soluble MICA (sMICA). Elevated sMICA acts as a decoy ligand for NKG2D receptors on NK cells, impairing cytotoxicity and facilitating immune escape. Functional assays confirmed that tRF-3021a knockdown enhances NK cell-mediated CRC cell killing, while overexpression promotes CRC proliferation and inhibits apoptosis. Clinically, tRF-3021a is elevated in CRC tissues, serum exosomes, and cell lines, cleaved by ANG, demonstrating diagnostic potential. In vivo , experiments provided further evidence that inhibition of tRF-3021a reduce tumorigenicity.
Our findings reveal tRF-3021a as a novel biomarker and therapeutic target for CRC immunotherapy.
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