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:TM4SF5-mediated liver malignancy involves NK cell exhaustion-like phenotypes.
TM4SF5-mediated liver malignancy involves NK cell exhaustion-like phenotypes.
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肿瘤微环境中异常的细胞外基质和免疫细胞改变促进肝癌发生的病理进展。尽管跨膜4 L六家族成员5(TM4SF5)参与肝纤维化和癌症,但其在癌变过程中逃避免疫监视的机制仍不清楚。
我们利用体外原代细胞以及遗传或化学诱导小鼠模型的体内肝组织,研究了TM4SF5介导的信号传导如何导致免疫逃逸。TM4SF5转基因和diethylnitrosamine(DEN)诱导的肝癌小鼠模型分别表现出纤维化肝脏和癌变肝脏,同时伴有TM4SF5、pY 705 STAT3、collagen I和laminin 2水平升高。这些TM4SF5介导的效应被TM4SF5抑制剂4'-(p-toluenesulfonylamido)-4-hydroxychalcone(TSAHC)消除。TM4SF5依赖性肿瘤发生涉及自然杀伤(NK)细胞耗竭样表型,包括NK细胞数量或功能减少,这些变化被TSAHC治疗阻断。癌细胞中TM4SF5表达下调NK细胞细胞毒性所需的刺激性配体和受体,包括SLAMF6、SLAMF7、MICA/B等。TM4SF5抑制或阻抑降低了STAT3信号活性,并恢复了受体水平和NK细胞监视,导致纤维化和癌变表型减少以及生存期延长。
总之,这些发现表明,TM4SF5介导的STAT3活性对细胞外基质的调节参与肝病向HCC的进展,并且TM4SF5似乎在肝癌发生过程中抑制NK细胞。
Aberrant extracellular matrix and immune cell alterations within the tumor microenvironment promote the pathological progression of liver carcinogenesis. Although transmembrane 4 L six family member 5 (TM4SF5) is involved in liver fibrosis and cancer, its mechanism avoiding immune surveillance during carcinogenesis remains unknown.
We investigated how TM4SF5-mediated signaling caused immune evasion using in vitro primary cells and in vivo liver tissues from genetic or chemically induced mouse models. TM4SF5-transgenic and diethylnitrosamine (DEN)-induced liver cancer mouse models exhibited fibrotic and cancerous livers, respectively, with enhanced TM4SF5, pY 705 STAT3, collagen I, and laminin 2 levels. These TM4SF5-mediated effects were abolished by TM4SF5 inhibitor, 4'-(p-toluenesulfonylamido)-4-hydroxychalcone (TSAHC). TM4SF5-dependent tumorigenesis involved natural killer (NK) cell exhaustion-like phenotypes including the reduction of NK cell number or function, which were blocked with TSAHC treatment.
TM4SF5 expression in cancer cells downregulated stimulatory ligands and receptors for NK cell cytotoxicity, including SLAMF6, SLAMF7, MICA/B, and others. TM4SF5 suppression or inhibition reduced STAT3 signaling activity and recovered the receptor levels and NK cell surveillance, leading to reduced fibrotic and cancerous phenotypes, and longer survival.
Altogether, these findings suggest that TM4SF5-mediated STAT3 activity for extracellular matrix modulation is involved in the progression of liver disease to HCC and that TM4SF5 appears to suppress NK cells during liver carcinogenesis.
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