Beijing Advanced Innovation Center for Food Nutrition and Human Health, College of Food Science and Nutritional Engineering, Beijing Key Laboratory for Food Non-thermal Processing, China Agricultural University, Beijing, China.
Cancer Sci. 2021 May;112(5):1878-1887. doi: 10.1111/cas.14844. Epub 2021 Mar 4.
Increasing bodies of evidence support the involvement of tumor-intrinsic action in PD-L1-mediated cancer progression. However, the mechanisms underlying the tumor-intrinsic function of PD-L1 are less well understood. In the present study, we found a positive correlation between PD-L1 expression and MET phosphorylation in lung cancer and melanoma cell lines. PD-L1 inhibition led to a decrease in MET phosphorylation, while PD-L1 induction by IFN-γ resulted in a PD-L1-dependent increase of MET phosphorylation both in vitro and in vivo. The results indicated that MET phosphorylation can be positively regulated by PD-L1. Furthermore, we identified PTP1B as a mediator contributing to the regulation of MET phosphorylation by PD-L1. In agreement with the induction of MET phosphorylation by PD-L1, inhibition of PD-L1 caused reduced phosphorylation of ERKs, a known downstream kinase of MET, and inhibited cell proliferation. Collectively, the present study demonstrated for the first time that the MET pathway, as a downstream of PD-L1, contributed to its tumor-intrinsic effect, and provided a novel mechanistic explanation for the tumor-intrinsic function of PD-L1 and a rationale for the combination of immunotherapy and MET-targeted therapy in cancer treatment.
越来越多的证据支持肿瘤内在作用参与 PD-L1 介导的癌症进展。然而,PD-L1 肿瘤内在功能的机制尚不清楚。在本研究中,我们发现肺癌和黑色素瘤细胞系中 PD-L1 表达与 MET 磷酸化之间存在正相关。PD-L1 抑制导致 MET 磷酸化减少,而 IFN-γ诱导的 PD-L1 导致 MET 磷酸化增加,无论是在体外还是体内。结果表明,MET 磷酸化可以被 PD-L1 正向调节。此外,我们鉴定出 PTP1B 是 PD-L1 调节 MET 磷酸化的一种介导物。与 PD-L1 诱导 MET 磷酸化一致,PD-L1 抑制导致 ERKs 的磷酸化减少,ERKs 是 MET 的已知下游激酶,并抑制细胞增殖。总之,本研究首次证明 MET 途径作为 PD-L1 的下游,有助于其肿瘤内在作用,并为 PD-L1 的肿瘤内在功能提供了一种新的机制解释,并为癌症治疗中免疫疗法和 MET 靶向治疗的联合提供了合理依据。