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[PI3K/Akt/mTOR通路抑制剂可抑制B7-H4介导的免疫抵抗]

[B7-H4-mediated immunoresistance is supressed by PI3K/Akt/mTOR pathway inhibitors].

作者信息

Zeng S, Song H, Chen Y, Xie W, Zhang L

机构信息

Department of Biology Pharmaceutics, College of Pharmaceutical Sciences, Soochow University, Suzhou, 215123 People's Republic of China.

Department of Immunology, School of Basic Medicine and Life Sciences, Medical College of Soochow University, Suzhou, 215123 People's Republic of China.

出版信息

Mol Biol (Mosk). 2016 Nov-Dec;50(6):1007-1013. doi: 10.7868/S0026898416060240.

Abstract

B7-H4 plays an important role in tumor immune evasion. In previous studies we have found that B7-H4 can translocate to the nucleus, and the exposure to PI3K inhibitor Ly294002 affects B7-H4 subcellular distribution. In this study we report the role of PI3K/Akt pathway in the B7-H4 subcellular distribution and the effect of PI3K/Akt inhibitors on B7-H4-mediated immunoresistance. The involvement of PI3K/Akt pathway in B7-H4 subcellular distribution was evident in experiments with wortmannin, while MDM2 inhibitor nutlin-3 and the mTOR inhibitor rapamycin were used to dissect the signaling downstream of Akt. Wortmannin and rapamycin demonstrated similar effects on B7-H4 subcellular distribution. Exposure to any of these inhibitors decreased levels of membrane B7-H4 while at the same time inducing its nuclear accumulation, while exposure to nutlin-3 had no effect on B7-H4 subcellular distribution. In the T cell proliferation assay, both wortmannin and rapamycin effectively inhibited B7-H4 WT/293 cells-mediated T cell proliferation while exerting no effect on Mock/293 cells. PI3K/Akt/mTOR plays a role in B7-H4 subcellular distribution, while MDM2 does not take part in it. Moreover, we show that wortmannin and rapamycin inhibit B7-H4-mediated tumor immunoresistance through regulating B7-H4 subcellular distribution. Taken together, these results suggest that PI3K/Akt/mTOR inhibitors might be used for adjuvant therapy aimed at inhibition of immune evasion.

摘要

B7-H4在肿瘤免疫逃逸中发挥重要作用。在先前的研究中,我们发现B7-H4可转运至细胞核,且暴露于PI3K抑制剂Ly294002会影响B7-H4的亚细胞分布。在本研究中,我们报告了PI3K/Akt信号通路在B7-H4亚细胞分布中的作用以及PI3K/Akt抑制剂对B7-H4介导的免疫抵抗的影响。在使用渥曼青霉素的实验中,PI3K/Akt信号通路参与B7-H4亚细胞分布的情况很明显,同时使用MDM2抑制剂Nutlin-3和mTOR抑制剂雷帕霉素来剖析Akt下游的信号传导。渥曼青霉素和雷帕霉素对B7-H4亚细胞分布表现出相似的作用。暴露于这些抑制剂中的任何一种都会降低膜B7-H4的水平,同时诱导其核内积累,而暴露于Nutlin-3对B7-H4亚细胞分布没有影响。在T细胞增殖试验中,渥曼青霉素和雷帕霉素均有效抑制B7-H4 WT/293细胞介导的T细胞增殖,而对Mock/293细胞无作用。PI3K/Akt/mTOR在B7-H4亚细胞分布中起作用,而MDM2不参与其中。此外,我们表明渥曼青霉素和雷帕霉素通过调节B7-H4亚细胞分布来抑制B7-H4介导的肿瘤免疫抵抗。综上所述,这些结果表明PI3K/Akt/mTOR抑制剂可能用于旨在抑制免疫逃逸的辅助治疗。

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