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:Anti-NKG2C/IL-15/anti-CD33 killer engager directs primary and iPSC-derived NKG2C(+) NK cells to target myeloid leukemia.
Anti-NKG2C/IL-15/anti-CD33 killer engager directs primary and iPSC-derived NKG2C(+) NK cells to target myeloid leukemia.
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自然杀伤(NK)细胞介导转化细胞的细胞裂解,目前被用于癌症过继细胞治疗。研究显示,人巨细胞病毒感染可扩增一类表达激活受体NKG2C的“适应性”NK细胞,其功能特征不同于常规NK细胞。由于NKG2C向NK细胞传递强激活信号,我们假设NKG2C可特异性触发NK细胞介导的抗肿瘤应答。为使NKG2C+ NK细胞产生靶向肿瘤的应答,我们构建了抗NKG2C/IL-15/抗CD33杀伤连接器NKG2C-KE,引导NKG2C+细胞靶向CD33+细胞及急性髓系白血病细胞表达的肿瘤相关抗原。对于异基因移植后巨细胞病毒再激活患者来源的NKG2C表达NK细胞,NKG2C-KE诱导了特异性脱颗粒、干扰素产生和细胞增殖。
我们还在更均一的体系中测试了该分子,使用经工程化改造、高水平表达NKG2C的诱导多能干细胞(iPSC)来源NK(iNK)细胞。NKG2C-KE触发iNK细胞介导的细胞毒性,靶向CD33+细胞和原代AML原始细胞。NKG2C-KE与适应性NK细胞及NKG2C+ iNK细胞的特异性相互作用代表一种新的免疫治疗范式,可独特地募集高活性NK细胞,通过重新定向靶向诱导其杀伤AML细胞。
Natural killer (NK) cells mediate the cytolysis of transformed cells and are currently used as an adoptive cellular therapy to treat cancer. Infection with human cytomegalovirus has been shown to expand a subset of "adaptive" NK cells expressing the activation receptor NKG2C that have preferred functional attributes distinct from conventional NK cells. Because NKG2C delivers a strong activating signal to NK cells, we hypothesized that NKG2C could specifically trigger NK-cell-mediated antitumor responses. To elicit a tumor-directed response from NKG2C + NK cells, we created an anti-NKG2C/IL-15/anti-CD33 killer engager called NKG2C-KE that directs NKG2C + cells to target CD33 + cells and tumor-associated antigen expressed by acute myelogenous leukemia cells.
The NKG2C-KE induced specific degranulation, interferon- production, and proliferation of NKG2C-expressing NK cells from patients who reactivated cytomegalovirus after allogeneic transplantation. The NKG2C-KE was also tested in a more homogeneous system using induced pluripotent stem cell (iPSC)-derived NK (iNK) cells that have been engineered to express NKG2C at high levels.
The NKG2C-KE triggered iNK-cell-mediated cytotoxicity against CD33 + cells and primary AML blasts. The NKG2C-KE-specific interaction with adaptive NK and NKG2C + iNK cells represents a new immunotherapeutic paradigm that uniquely engages highly active NK cells to induce cytotoxicity against AML through redirected targeting.
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