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:A Novel Attenuated CD122-Biased IL15 Mutein Promotes Strong NK and T Cell-Dependent Antitumor Immunity.
A Novel Attenuated CD122-Biased IL15 Mutein Promotes Strong NK and T Cell-Dependent Antitumor Immunity.
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白细胞介素15(IL-15)可增强NK细胞和T细胞免疫,在肿瘤免疫治疗中潜力巨大。但其临床应用前景受药代动力学差及全身免疫相关毒性限制。
本研究报告一种新型偏向CD122的IL-15突变体V0013,通过截去IL-15羧基端4个氨基酸(I111、N112、T113和S114)构建。V0013保留整体细胞因子结构及对关键受体亚基CD122的完整结合能力,但总体效力显著降低。体内实验显示,V0013半衰期延长、安全性改善且药效学作用持续。作为单药,V0013有效促进NK细胞驱动的抗肿瘤免疫,并增强抗体治疗效果。
进一步机制研究表明,与特定受体亚基的相互作用决定IL-15突变体的功能和效力。CD122是IL-15介导信号所必需的,并决定其偏向NK和记忆CD8阳性T细胞。与衰减程度相近但CD122结合明显较弱的IL-15突变体(weak-IL15)相比,V0013更接近野生型IL-15功能,可更强地促进NK细胞增殖和存活。在植入T细胞的肿瘤模型中,V0013选择性增强肿瘤内记忆型、而非初始型CD8阳性T细胞,肿瘤抑制效果优于weak-IL15。RNA测序进一步阐明CD122在IL-15信号中的关键作用,并显示保留完整CD122结合能力的突变体可诱导强效抗肿瘤免疫。这些发现支持衰减型、偏向CD122的IL-15突变体用于癌症及其他疾病治疗的潜力。
Interleukin-15 (IL15) potentiates NK and T cell immunity and has huge potential for tumor immunotherapy.
However, the clinical prospects of IL15 has been hindered by poor pharmacokinetics and systemic immune-related toxicities.
Here, we report the development of a novel CD122-biased IL15 mutein, V0013, generated by the truncating four C-terminal amino acids (I111, N112, T113, and S114) of IL15. V0013 retains the overall cytokine structure and has intact binding to the critical CD122 receptor subunit but exhibits significantly reduced overall potency.
In vivo, V0013 demonstrates a prolonged half-life, improved safety, and sustained pharmacodynamic effects. As a single agent, V0013 effectively promotes NK cell-driven antitumor immunity and enhances therapeutic efficacy of antibodies.
Further mechanistic studies reveal that the interaction with specific receptor subunits dictates the function and potency of IL15 mutein. CD122 is essential for IL15-mediated signaling and prescribes its preference to NK and memory CD8+ T cells. Compared with an IL15 mutein with similar attenuation but markedly weaker CD122 binding (weak- IL15), V0013 more closely resembles WT IL15 functions, driving superior NK cell proliferation and survival.
In a tumor model engrafted with T cells, V0013 selectively enhances memory but not na ve CD8+ T cells in tumor, leading to enhanced tumor inhibition compared with weak- IL15. RNA sequencing analysis further elucidates the critical role of CD122 in IL15 signaling and demonstrates that the mutein retaining intact CD122 binding elicits strong antitumor immunity.
These findings support the therapeutic potential of the attenuated CD122-biased IL15 mutein therapy for cancer and other diseases.
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