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:The HLA-G immune checkpoint: a new immuno-stimulatory role for the α1-domain-deleted isoform.
The HLA-G immune checkpoint: a new immuno-stimulatory role for the α1-domain-deleted isoform.
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癌细胞异质性部分通过多种异构体的表达得以维持,这给设计有效的治疗方法带来了重大挑战。在这方面,在大多数所分析的肿瘤中均发现了免疫检查点 HLA-G 的异构体,例如 ccRCC,即最常见的人类肾脏恶性肿瘤。特别是 HLA-G∆α1,这是目前所描述的唯一缺乏 α1 胞外结构域的 HLA-G 异构体,已在 ccRCC 中以及此处滋养层细胞中新近被鉴定。利用表达 HLA-G∆α1 的细胞模型,我们揭示了其相对于主要 HLA-G 异构体即全长 HLA-G1 的特定功能及重叠功能。
我们发现 HLA-G∆α1 具有若干独特特征:(i) 尽管拥有 α3 结构域,它不与 β2-微球蛋白结合;(ii) 由于缺乏肽结合槽,它可能无法向 T 细胞呈递肽;(iii) 它对周围血 NK 细胞和 T 细胞发挥免疫刺激活性,而所有已知的 HLA-G 异构体均为免疫抑制性检查点分子。HLA-G∆α1 对周围血 NK 细胞细胞毒功能的这种免疫刺激特性具有个体依赖性,且并非通过与已知 HLA-G 受体 ILT2 的相互作用来发挥。
重要的是,我们在此面对的是 HLA-G 一种异构体的潜在抗肿瘤效应,这与所有其他 HLA-G 异构体所描述的促肿瘤特性相反,在旨在阻断该免疫检查点的未来治疗设计中应予以考虑。
The heterogeneity of cancer cells, in part maintained via the expression of multiple isoforms, introduces significant challenges in designing effective therapeutic approaches. In this regard, isoforms of the immune checkpoint HLA-G have been found in most of the tumors analyzed, such as ccRCC, the most common human renal malignancy.
In particular, HLA-G∆α1, which is the only HLA-G isoform described that lacks the α1 extracellular domain, has been newly identified in ccRCC and now here in trophoblasts. Using a cellular model expressing HLA-G∆α1, we have uncovered its specific and overlapping functional roles, relative to the main HLA-G isoform, i. e. , the full-length HLA-G1.
We found that HLA-G∆α1 has several particular features: (i) although possessing the α3 domain, it does not associate with β2-microglobulin; (ii) it may not present peptides to T cells due to absence of the peptide-binding groove; and (iii) it exerts immune-stimulatory activity towards peripheral blood NK and T cells, while all known isoforms of HLA-G are immune-inhibitory checkpoint molecules.
Such immune-stimulatory properties of HLA-G∆α1 on the cytotoxic function of peripheral blood NK cells are individual dependent and are not exerted through the interaction with the known HLA-G receptor, ILT2.
Importantly, we are faced here with a potential antitumor effect of an HLA-G isoform, opposed to the pro-tumor properties described for all other HLA-G isoforms, which should be taken into account in future therapeutic designs aimed at blocking this immune checkpoint.
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