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:Distinct immune stimulatory effects of anti-human VISTA antibodies are determined by Fc-receptor interaction.
Distinct immune stimulatory effects of anti-human VISTA antibodies are determined by Fc-receptor interaction.
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VISTA(PD-1H)是一种免疫调节分子,被认为是下一代免疫肿瘤学靶点的一部分。VISTA是免疫球蛋白(Ig)超家族细胞表面分子,主要表达于髓系细胞,在一定程度上也表达于NK细胞和T细胞。
在此前的临床前研究中,一些靶向VISTA的抗体提供免疫抑制信号,而另一些抗体则触发免疫刺激信号。重要的是,对于治疗性抗体而言,同种型骨架可对 antibody 功能产生强烈影响。为阐明免疫刺激性抗VISTA抗体的作用机制,我们研究了三种不同的抗人VISTA抗体克隆,每种分别构建在三种目前用于治疗性抗体的不同IgG同种型上:未修饰的IgG1(IgG1-WT)、IgG1-KO(IgG1-LL234,235AA变体,Fc效应功能降低)和IgG4-Pro(IgG4-S228P变体,铰链区稳定化)。抗体功能在人外周血单核细胞(PBMC)的混合白细胞反应(MLR)中进行分析,作为正在进行的免疫反应的模型系统;在未刺激的人PBMC上进行分析,作为静息免疫系统的模型系统;还在急性髓系白血病(AML)患者样本上进行分析,以评估抗VISTA抗体对原发肿瘤材料的作用。三种抗人VISTA抗体的功能由其IgG同种型骨架决定。抗VISTA-IgG4-Pro和抗VISTA-IgG1-WT抗体有效增强了健康供者PBMC的MLR,表现为细胞因子水平、T细胞活化标志物和T细胞增殖增加。
然而,在单个健康供者未刺激PBMC的培养中,只有抗VISTA-IgG1-WT抗体增加了静息髓系细胞上的活化标志物HLA-DR以及趋化因子水平。有趣的是,这些效应需要与不同Fc受体的相互作用,即CD64用于增强MLR,而CD16用于激活静息髓系细胞。
此外,抗VISTA-IgG1-KO抗体在任何模型系统中几乎没有影响。同样,在AML患者样本中,基于IgG4-Pro骨架而非IgG1-KO骨架的抗VISTA抗体增加了免疫细胞与CD34+ AML癌细胞之间的相互作用,作为活性的新型读出。
总之,拮抗性抗VISTA抗体的免疫刺激效应由抗体同种型和与不同Fc-γ受体的相互作用所决定,突显了在为免疫肿瘤学应用设计免疫刺激抗体治疗药物时理解这些相互作用的重要性。
VISTA (PD-1H) is an immune regulatory molecule considered part of the next wave of immuno-oncology targets. VISTA is an immunoglobulin (Ig) superfamily cell surface molecule mainly expressed on myeloid cells, and to some extent on NK cells and T cells. In previous preclinical studies, some VISTA-targeting antibodies provided immune inhibitory signals, while other antibodies triggered immune stimulatory signals.
Importantly, for therapeutic antibodies, the isotype backbone can have a strong impact on antibody function. To elucidate the mode of action of immune stimulatory anti-VISTA antibodies, we studied three different anti-human VISTA antibody clones, each on three different IgG isotypes currently used for therapeutic antibodies: unaltered IgG1 (IgG1-WT), IgG1-KO (IgG1-LL234,235AA-variant with reduced Fc-effector function), and IgG4-Pro (IgG4- S228P-variant with stabilized hinge region).
Antibody functionality was analysed in mixed leukocyte reaction (MLR) of human peripheral blood mononuclear cells (PBMCs), as a model system for ongoing immune reactions, on unstimulated human PBMCs, as a model system for a resting immune system, and also on acute myeloid leukemia (AML) patient samples to evaluate anti-VISTA antibody effects on primary tumor material.
The functions of three anti-human VISTA antibodies were determined by their IgG isotype backbones. An MLR of healthy donor PBMCs was effectively augmented by anti-VISTA-IgG4-Pro and anti-VISTA-IgG1-WT antibodies, as indicated by increased levels of cytokines, T cell activation markers and T cell proliferation.
However, in a culture of unstimulated PBMCs of single healthy donors, only anti-VISTA-IgG1-WT antibodies increased the activation marker HLA-DR on resting myeloid cells, and chemokine levels. Interestingly, interactions with different Fc-receptors were required for these effects, namely CD64 for augmentation of MLR, and CD16 for activation of resting myeloid cells.
Furthermore, anti-VISTA-IgG1-KO antibodies had nearly no impact in any model system. Similarly, in AML patient samples, anti-VISTA-antibody on IgG4-Pro backbone, but not on IgG1-KO backbone, increased interactions, as a novel readout of activity, between immune cells and CD34+ AML cancer cells.
In conclusion, the immune stimulatory effects of antagonistic anti-VISTA antibodies are defined by the antibody isotype and interaction with different Fc-gamma-receptors, highlighting the importance of understanding these interactions when designing immune stimulatory antibody therapeutics for immuno-oncology applications.
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