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:Enhanced IL-15-mediated NK cell activation and proliferation by an ADAM17 function-blocking antibody involves CD16A, CD137, and accessory cells.
Enhanced IL-15-mediated NK cell activation and proliferation by an ADAM17 function-blocking antibody involves CD16A, CD137, and accessory cells.
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我们的数据首次揭示,CD16A 与 CD137 分别支撑了 Medi-1 对 IL-15 驱动的 NK 细胞活化与增殖的增强作用,其中后者需要 PBMC 辅助细胞参与。
NK细胞识别肿瘤配体和抗原后活化,IL-15等细胞因子疗法可刺激内源及过继NK细胞。但这些刺激会活化膜蛋白酶ADAM17,切割NK细胞表面受体,形成限制杀伤功能的负反馈。抑制ADAM17可增强IL-15介导的NK细胞增殖。本研究解析其机制。
人外周血PBMC或纯化NK细胞与重组IL-15及抗ADAM17抗体培养,采用流式、免疫印迹及活细胞成像评估增殖、表型、CD16A信号和抗肿瘤活性。
抗ADAM17单抗Medi-1显著增强IL-15早期诱导的NK活化。不同抗体构型实验显示,该作用涉及活化型Fc受体CD16A。Medi-1与NK细胞ADAM17结合后被CD16A识别,并阻止其脱落,从而启动并延长CD16A信号;未见明显NK自相杀伤或功能障碍。Medi-1与IL-15协同提高CD16A阳性NK细胞CD137表达,在PBMC辅助细胞或抗CD137激动抗体存在时增强增殖。
CD16A和CD137分别介导Medi-1增强IL-15诱导的NK活化和增殖,后者需要PBMC辅助细胞。Medi-1可能成为提高患者NK细胞抗肿瘤能力的新策略。
Natural killer (NK) cells are being extensively studied as a cell therapy for cancer. These cells are activated by recognition of ligands and antigens on tumor cells. Cytokine therapies, such as IL-15, are also broadly used to stimulate endogenous and adoptively transferred NK cells in patients with cancer. These stimuli activate the membrane protease ADAM17, which cleaves various cell-surface receptors on NK cells as a negative feedback loop to limit their cytolytic function. ADAM17 inhibition can enhance IL-15-mediated NK cell proliferation in vitro and in vivo. In this study, we investigated the underlying mechanism of this process.
Peripheral blood mononuclear cells (PBMCs) or enriched NK cells from human peripheral blood, either unlabeled or labeled with a cell proliferation dye, were cultured for up to 7 days in the presence of rhIL-15 an ADAM17 function-blocking antibody. Different fully human versions of the antibody were generated; Medi-1 (IgG1), Medi-4 (IgG4), Medi-PGLALA, Medi-F(ab') 2 , and TAB16 (anti-ADAM17 and anti-CD16 bispecific) to modulate CD16A binding. Flow cytometry was used to assess NK cell proliferation and phenotypic markers, immunoblotting to examine CD16A signaling, and IncuCyte-based live cell imaging to measure NK cell antitumor activity.
The ADAM17 function-blocking monoclonal antibody (mAb) Medi-1 markedly increased early NK cell activation by IL-15. By using different engineered versions of the antibody, we demonstrate involvement by CD16A, an activating Fc receptor and well-described ADAM17 substrate. Hence, Medi-1 when bound to ADAM17 on NK cells is engaged by CD16A and blocks its shedding, inducing and prolonging its signaling. This process did not promote evident NK cell fratricide or dysfunction. Synergistic signaling by Medi-1 and IL-15 enhanced the upregulation of CD137 on CD16A + NK cells and augmented their proliferation in the presence of PBMC accessory cells or an anti-CD137 agonistic mAb.
Our data reveal for the first time that CD16A and CD137 underpin Medi-1 enhancement of IL-15-driven NK cell activation and proliferation, respectively, with the latter requiring PBMC accessory cells. The use of Medi-1 represents a novel strategy to enhance IL-15-driven NK cell proliferation, and it may be of therapeutic importance by increasing the antitumor activity of NK cells in patients with cancer.
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