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:Bispecific killer cell engagers employing species cross-reactive NKG2D binders redirect human and murine lymphocytes to ErbB2/HER2-positive malignancies.
Bispecific killer cell engagers employing species cross-reactive NKG2D binders redirect human and murine lymphocytes to ErbB2/HER2-positive malignancies.
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NKG2D是一种由自然杀伤(NK)细胞和其他细胞毒性淋巴细胞表达的活化受体,通过识别不同的应激诱导细胞表面配体(NKG2DL)在消除肿瘤细胞中发挥关键作用。为了将这一机制应用于癌症免疫治疗,我们生成了NKG2D衔接双特异性抗体,可选择性地将免疫效应细胞重定向至表达肿瘤相关抗原ErbB2(HER2)的癌细胞。通过对鸡先后免疫人源和鼠源抗原,随后对酵母表面展示免疫文库进行严格筛选,获得了对人源和鼠源受体具有交叉反应性的NKG2D特异性单链可变片段(scFv)抗体。筛选出四个不同的物种交叉反应性(sc)scFv结构域,并通过IgG4 Fc结构域将其与针对ErbB2的第二scFv片段连接,重组成双特异性衔接器形式。
所得分子(命名为scNKAB-ErbB2)以二硫键连接的同源二聚体形式表达,并展示出与ErbB2阳性癌细胞以及表达NKG2D的原代人源和鼠源淋巴细胞、以及用来源于人源和鼠源NKG2D的嵌合抗原受体工程化的NK-92细胞(分别命名为hNKAR和mNKAR)的高效结合。发现其中两个scNKAB-ErbB2分子可与天然NKG2D配体MICA竞争,而另外两个衔接器则与配体结合位点之外的表位相互作用。尽管如此,所有四种测试的scNKAB-ErbB2抗体在将原代人淋巴细胞和鼠淋巴细胞以及hNKAR-NK-92和mNKAR-NK-92细胞的细胞毒性活性重定向至表达ErbB2的靶标方面效果相似,表明这些物种交叉反应性衔接分子的进一步开发用于癌症免疫治疗是合理的。
NKG2D is an activating receptor expressed by natural killer (NK) cells and other cytotoxic lymphocytes that plays a pivotal role in the elimination of neoplastic cells through recognition of different stress-induced cell surface ligands (NKG2DL). To employ this mechanism for cancer immunotherapy, we generated NKG2D-engaging bispecific antibodies that selectively redirect immune effector cells to cancer cells expressing the tumor-associated antigen ErbB2 (HER2). NKG2D-specific single chain fragment variable (scFv) antibodies cross-reactive toward the human and murine receptors were derived by consecutive immunization of chicken with the human and murine antigens, followed by stringent screening of a yeast surface display immune library. Four distinct species cross-reactive (sc) scFv domains were selected, and reformatted into a bispecific engager format by linking them via an IgG4 Fc domain to a second scFv fragment specific for ErbB2.
The resulting molecules (termed scNKAB-ErbB2) were expressed as disulfide-linked homodimers, and demonstrated efficient binding to ErbB2-positive cancer cells as well as NKG2D-expressing primary human and murine lymphocytes, and NK-92 cells engineered with chimeric antigen receptors derived from human and murine NKG2D (termed hNKAR and mNKAR). Two of the scNKAB-ErbB2 molecules were found to compete with the natural NKG2D ligand MICA, while the other two engagers interacted with an epitope outside of the ligand binding site.
Nevertheless, all four tested scNKAB-ErbB2 antibodies were similarly effective in redirecting the cytotoxic activity of primary human and murine lymphocytes as well as hNKAR-NK-92 and mNKAR-NK-92 cells to ErbB2-expressing targets, suggesting that further development of these species cross-reactive engager molecules for cancer immunotherapy is warranted.
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