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:PVRIG is a novel natural killer cell immune checkpoint receptor in acute myeloid leukemia.
PVRIG is a novel natural killer cell immune checkpoint receptor in acute myeloid leukemia.
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本研究探讨了急性髓系白血病(AML)中新型免疫检查点脊髓灰质炎病毒受体相关免疫球蛋白结构域(PVRIG)。我们发现AML患者原始细胞一致表达PVRIG配体(脊髓灰质炎病毒受体相关2,PVRL2)。
此外,PVRIG阻断显著增强了NK细胞对PVRL2+、脊髓灰质炎病毒受体(PVR)lo AML细胞系的杀伤,并在患者原代AML原始细胞背景下显著增加了NK细胞活化和脱颗粒。
然而,在AML患者骨髓中,NK细胞PVRIG表达水平并未升高。为了解PVRIG阻断可能如何被治疗性利用,我们研究了PVRIG的生物学,并揭示NK细胞活化导致细胞表面PVRIG表达减少。无论NK细胞是通过肿瘤细胞识别、细胞因子(IL-2和IL-12)还是活化受体刺激(CD16和NKp46)被激活,这种情况都会发生。PVRIG在细胞质中的水平高于细胞表面,尤其是在CD56bright NK细胞上,IL-2和IL-12活化后其细胞质PVRIG水平进一步升高。在未刺激和活化的NK细胞中,PVRIG均通过内质网(ER)和高尔基体持续运输至细胞表面。
综上所述,我们的发现表明,抗PVRIG阻断抗体通过与表面结合的PVRIG结合而发挥作用,而PVRIG在未刺激和活化的NK细胞中均经历快速周转。
我们得出结论,PVRIG-PVRL2免疫检查点轴可 feasibly 通过PVRIG阻断抗体靶向,用于PVRL2+ AML的NK介导免疫治疗。
This study explored the novel immune checkpoint poliovirus receptor-related immunoglobulin domain-containing (PVRIG) in acute myeloid leukemia (AML).
We showed that AML patient blasts consistently expressed the PVRIG ligand (poliovirus receptor-related 2, PVRL2).
Furthermore, PVRIG blockade significantly enhanced NK cell killing of PVRL2+, poliovirus receptor (PVR)lo AML cell lines, and significantly increased NK cell activation and degranulation in the context of patient primary AML blasts.
However, in AML patient bone marrow, NK cell PVRIG expression levels were not increased. To understand how PVRIG blockade might potentially be exploited therapeutically, we investigated the biology of PVRIG and revealed that NK cell activation resulted in reduced PVRIG expression on the cell surface. This occurred whether NK cells were activated by tumour cell recognition, cytokines (IL-2 and IL-12) or activating receptor stimulation (CD16 and NKp46).
PVRIG was present at higher levels in the cytoplasm than on the cell surface, particularly on CD56bright NK cells, which further increased cytoplasmic PVRIG levels following IL-2 and IL-12 activation. PVRIG was continually transported to the cell surface via the endoplasmic reticulum (ER) and Golgi in both unstimulated and activated NK cells. Taken together, our findings suggest that anti- PVRIG blocking antibody functions by binding to surface-bound PVRIG, which undergoes rapid turnover in both unstimulated and activated NK cells.
We conclude that the PVRIGPVRL2 immune checkpoint axis can feasibly be targeted with PVRIG blocking antibody for NK-mediated immunotherapy of PVRL2+ AML.
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