4.6 Article

miR-143 Regulates Memory T Cell Differentiation by Reprogramming T Cell Metabolism

期刊

JOURNAL OF IMMUNOLOGY
卷 201, 期 7, 页码 2165-2175

出版社

AMER ASSOC IMMUNOLOGISTS
DOI: 10.4049/jimmunol.1800230

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资金

  1. National Natural Science Foundation of China [31400752, 81771781, 81171986, 81271815]
  2. National Key Research and Development Program of China [2016YFC1303501]
  3. Ministry of Public Health [201501004]
  4. Major Science and Technology Projects of Henan Province [1611003101000]

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MicroRNAs are an important regulator for T cell immune response. In this study, we aimed to identify microRNAs with the potential to regulate T cell differentiation. The influence of miR-143 on differentiation and function of CD8(+) T cells from healthy donors were detected, and it was found that miR-143 overexpression could significantly increase the differentiation of central memory T (Tcm) CD8(+) cells, decrease cell apoptosis, and increase proinflammatory cytokine secretion. Furthermore, the specific killing of HER2-CAR T cells against esophageal cancer cell line TE-7 was enhanced by miR-143 overexpression. Glucose transporter 1 (Glut-1) was identified as the critical target gene of miR-143 in the role of T cell regulation. By inhibition Glut-1, miR-143 inhibited glucose uptake and glycolysis in T cell to regulated T cell differentiation. Tcm cell populations were also suppressed in parallel with the downregulation of miR-143 in tumor tissues from 13 patients with esophagus cancer. IDO and its metabolite kynurenine in the tumor microenvironment were screened as an upstream regulator of miR-143. IDO small interfering RNA significantly increased the expression of miR-143 and Tcm cell population. In conclusion, our results show that miR-143 enhanced antitumor effects of T cell by promoting memory T cell differentiation and metabolism reprogramming through Glut-1. Our findings will encourage the development of new strategies targeting miR-143 in both cancer cells and T cells.

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