Cancer Exosomes Express CD39 and CD73, Which Suppress T Cells through Adenosine Production

微泡 腺苷 细胞外 腺苷受体 细胞生物学 嘌呤能信号 Jurkat细胞 外体 免疫系统 生物 癌细胞 细胞内 T细胞 受体 化学 生物化学 免疫学 癌症 小RNA 基因 遗传学 兴奋剂
作者
Aled Clayton,Saly Al‐Taei,Jason Webber,Malcolm D. Mason,Zsuzsanna Tabi
出处
期刊:Journal of Immunology [American Association of Immunologists]
卷期号:187 (2): 676-683 被引量:536
标识
DOI:10.4049/jimmunol.1003884
摘要

Extracellular adenosine is elevated in cancer tissue, and it negatively regulates local immune responses. Adenosine production from extracellular ATP has attracted attention as a mechanism of regulatory T cell-mediated immune regulation. In this study, we examined whether small vesicles secreted by cancer cells, called exosomes, contribute to extracellular adenosine production and hence modulate immune effector cells indirectly. We found exosomes from diverse cancer cell types exhibit potent ATP- and 5'AMP-phosphohydrolytic activity, partly attributed to exosomally expressed CD39 and CD73, respectively. Comparable levels of activity were seen with exosomes from pleural effusions of mesothelioma patients. In such fluids, exosomes accounted for 20% of the total ATP-hydrolytic activity. Exosomes can perform both hydrolytic steps sequentially to form adenosine from ATP. This exosome-generated adenosine can trigger a cAMP response in adenosine A(2A) receptor-positive but not A(2A) receptor-negative cells. Similarly, significantly elevated cAMP was also triggered in Jurkat cells by adding exosomes with ATP but not by adding exosomes or ATP alone. A proportion of healthy donor T cells constitutively express CD39 and/or CD73. Activation of T cells by CD3/CD28 cross-linking could be inhibited by exogenously added 5'AMP in a CD73-dependent manner. However, 5'AMP converted to adenosine by exosomes inhibits T cell activation independently of T cell CD73 expression. This T cell inhibition was mediated through the adenosine A(2A) receptor. In summary, the data highlight exosome enzymic activity in the production of extracellular adenosine, and this may play a contributory role in negative modulation of T cells in the tumor environment.
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