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:Blockade of the immunosuppressive KIR2DL5/PVR pathway elicits potent human NK cell-mediated antitumor immunity.
Blockade of the immunosuppressive KIR2DL5/PVR pathway elicits potent human NK cell-mediated antitumor immunity.
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靶向TIGIT/PVR通路的肿瘤免疫治疗目前面临挑战。KIR2DL5是人类杀伤细胞免疫球蛋白样受体(KIR)家族的一员,最近被鉴定为PVR的另一个结合伙伴。KIR2DL5/PVR通路的生物学功能和治疗潜力在很大程度上尚不清楚。
在此我们报道,KIR2DL5主要表达于具有成熟表型和细胞毒功能的人NK细胞上,并且它与PVR结合时不与其他3种已知的PVR受体竞争。NK细胞上的KIR2DL5与靶细胞上的PVR之间的相互作用诱导了抑制性突触的形成,而阻断KIR2DL5-PVR相互作用的新型单克隆抗体显著增强了NK细胞对PVR+人类肿瘤的细胞毒性。在机制上,KIR2DL5的胞内ITIM和ITSM在结合后均发生酪氨酸磷酸化,这对于KIR2DL5通过招募SHP-1和/或SHP-2介导的NK抑制至关重要。随后,ITIM/SHP-1/SHP-2和ITSM/SHP-1下调了下游Vav1/ERK1/2/p90RSK/NF- B信号通路。KIR2DL5+免疫细胞浸润于多种类型的PVR+人类癌症中。
值得注意的是,在多种基于NK细胞的人源化肿瘤模型中,KIR2DL5阻断减少了肿瘤生长并改善了总生存期。因此,我们的结果揭示了KIR2DL5介导的NK细胞免疫逃逸的功能机制,证明了阻断KIR2DL5/PVR轴可作为人类癌症的治疗方法,并为抗TIGIT疗法的临床失败提供了潜在机制。
Cancer immunotherapy targeting the TIGIT/PVR pathway is currently facing challenges. KIR2DL5, a member of the human killer cell, immunoglobulin-like receptor (KIR) family, has recently been identified as another binding partner for PVR. The biology and therapeutic potential of the KIR2DL5/PVR pathway are largely unknown.
Here we report that KIR2DL5 was predominantly expressed on human NK cells with mature phenotype and cytolytic function and that it bound to PVR without competition with the other 3 known PVR receptors. The interaction between KIR2DL5 on NK cells and PVR on target cells induced inhibitory synapse formation, whereas new monoclonal antibodies blocking the KIR2DL5-PVR interaction robustly augmented the NK cytotoxicity against PVR+ human tumors.
Mechanistically, both intracellular ITIM and ITSM of KIR2DL5 underwent tyrosine phosphorylation after engagement, which was essential for KIR2DL5-mediated NK suppression by recruiting SHP-1 and/or SHP-2. Subsequently, ITIM/SHP-1/SHP-2 and ITSM/SHP-1 downregulated the downstream Vav1/ERK1/2/p90RSK/NF- B signaling. KIR2DL5+ immune cells infiltrated in various types of PVR+ human cancers. Markedly, the KIR2DL5 blockade reduced tumor growth and improved overall survival across multiple NK cell-based humanized tumor models.
Thus, our results revealed functional mechanisms of KIR2DL5-mediated NK cell immune evasion, demonstrated blockade of the KIR2DL5/PVR axis as a therapy for human cancers, and provided an underlying mechanism for the clinical failure of anti-TIGIT therapies.
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