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:C3aR Signaling Inhibits NK-cell Infiltration into the Tumor Microenvironment in Mouse Models.
C3aR Signaling Inhibits NK-cell Infiltration into the Tumor Microenvironment in Mouse Models.
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许多实体瘤中细胞毒性 CD56 dim 自然杀伤(NK)细胞水平较低,提示 CD56 dim NK 细胞被排除于肿瘤微环境(TME)之外,导致免疫治疗缓解率下降。补体成分 3a(C3a)已知在实体瘤中具有促肿瘤和免疫抑制作用。既往报道提示 C3a 受体(C3aR)参与免疫细胞向 TME 的转运。C3aR 主要表达于活化细胞毒性 NK 细胞表面,但 C3aR 在 NK 细胞生物学中的具体作用尚未被研究。由于实体瘤产生升高的 C3a 且 NK 细胞浸润减少,我们假设 C3aR 可能在细胞毒性 NK 细胞募集进入 TME 中发挥作用。
我们的结果表明,在小鼠模型中阻断 NK 细胞中的 C3aR 信号可增加 NK 细胞向 TME 的浸润,并导致肿瘤消退。由于关键淋巴细胞转运整合素 LFA-1 协调活化 NK 细胞的迁移,我们希望深入了解 C3aR 信号与 LFA-1 之间的相互作用。
我们的结果表明,C3aR 与 LFA-1 之间的直接相互作用导致 LFA-1 高亲和力构象,从而减少 NK 细胞向 TME 的浸润。
我们提出,通过破坏 C3a 与 C3aR 的相互作用或抑制高亲和力 LFA-1 的形成来增强细胞毒性 NK 细胞向 TME 的浸润,代表了一种提高癌症免疫治疗效率的新策略。
Many solid tumors have low levels of cytotoxic CD56 dim natural killer (NK) cells, suggesting that CD56 dim NK-cell exclusion from the tumor microenvironment (TME) contributes to the decreased response rate of immunotherapy. Complement component 3a (C3a) is known for its tumor-promoting and immunosuppressive roles in solid tumors.
Previous reports have implicated the involvement of the C3a receptor (C3aR) in immune cell trafficking into the TME. C3aR is predominantly expressed on the surface of activated cytotoxic NK cells, but a specific role for C3aR in NK-cell biology has not been investigated. Because solid tumors generate elevated C3a and have decreased NK-cell infiltration, we hypothesized that C3aR might play a role in cytotoxic NK-cell recruitment into the TME.
Our results indicate that blocking C3aR signaling in NK cells increased NK-cell infiltration into the TME in mouse models and led to tumor regression. Because the critical lymphocyte trafficking integrin LFA-1 orchestrates the migration of activated NK cells, we wanted to gain insight into the interaction between C3aR signaling and LFA-1.
Our results demonstrated that direct interaction between C3aR and LFA-1, which led to a high-affinity LFA-1 conformation, decreased NK-cell infiltration into the TME.
We propose that approaches to enhance cytotoxic NK-cell infiltration into the TME, through either disrupting C3a and C3aR interaction or inhibiting the formation of high-affinity LFA-1, represent a new strategy to improve the efficiency of immunotherapy for cancer treatment.
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