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TGF-ß1 expression in regulatory NK1.1-CD4+NKG2D+ T cells dependents on the PI3K-p85α/JNK, NF-κB and STAT3 pathways.
Han, Sen; Ding, Shizhen; Miao, Xin; Lin, Zhijie; Lu, Guotao; Xiao, Weiming; Ding, Yanbing; Qian, Li; Zhang, Yu; Jia, Xiaoqin; Zhu, Guoqiang; Gong, Weijuan.
Afiliação
  • Han S; Department of Immunology, School of Medicine, Yangzhou UniversityYangzhou, Jiangsu Province, P. R. China.
  • Ding S; Department of Immunology, School of Medicine, Yangzhou UniversityYangzhou, Jiangsu Province, P. R. China.
  • Miao X; Department of Immunology, School of Medicine, Yangzhou UniversityYangzhou, Jiangsu Province, P. R. China.
  • Lin Z; Department of Immunology, School of Medicine, Yangzhou UniversityYangzhou, Jiangsu Province, P. R. China.
  • Lu G; Department of Gastroenterology, The Affiliated Hospital, Yangzhou UniversityYangzhou, Jiangsu Province, P. R. China.
  • Xiao W; Department of Gastroenterology, The Affiliated Hospital, Yangzhou UniversityYangzhou, Jiangsu Province, P. R. China.
  • Ding Y; Department of Gastroenterology, The Affiliated Hospital, Yangzhou UniversityYangzhou, Jiangsu Province, P. R. China.
  • Qian L; Department of Immunology, School of Medicine, Yangzhou UniversityYangzhou, Jiangsu Province, P. R. China.
  • Zhang Y; Jiangsu Key Laboratory of Integrated Traditional Chinese and Western Medicine for Prevention and Treatment of Senile DiseasesP. R. China.
  • Jia X; Jiangsu Key Laboratory of Integrated Traditional Chinese and Western Medicine for Prevention and Treatment of Senile DiseasesP. R. China.
  • Zhu G; Jiangsu Co-innovation Center for Prevention and Control of Important Animal Infectious Diseases and ZoonosesP. R. China.
  • Gong W; Jiangsu Key Laboratory of Zoonosis, Yangzhou UniversityYangzhou 225009, P. R. China.
Am J Cancer Res ; 8(3): 489-501, 2018.
Article em En | MEDLINE | ID: mdl-29637003
NK1.1-CD4+NKG2D+ cells exert their immune-regulatory function in tumor as an unconventional regulatory T cell subset through the production of TGF-ß1; however, the molecular mechanisms involving with the activation of nuclear factors for TGF-ß1 transcription remain unclear. Here we determined that the PI3K-p85α subunit was specifically activated in NK1.1-CD4+NKG2D+ cells following an 8-hour stimulation by sRAE-1 or α-CD3/sRAE-1, subsequently leading to the activation of PI3K-p110, Akt, and JNK. On the contrary, α-CD3/α-CD28 stimulation did not induce the activation of PI3K-p85 and JNK. Consequently, activation of the nuclear transcription factor AP-1 as a consequence of JNK activation regulated TGF-ß1 expression in NK1.1-CD4+NKG2D+ cells. Furthermore, activation of NF-κB in NK1.1-CD4+NKG2D+ cells resulted from both protein kinase C activation downstream of TCR/CD3 signaling and PI3K activation induced by NKG2D engagement. The STAT3-Y705 phosphorylation, as activated by PI3K, under stimulations of the sRAE-1 or α-CD3/sRAE-1 also contributed to the TGF-ß1 expression in NK1.1-CD4+NKG2D+ cells. Moreover, ChIP assay confirmed that STAT3 was capable of binding with the promoter regions of TGF-ß1. In conclusion, our data showed that the TGF-ß1 transcription in NK1.1-CD4+NKG2D+ cells induced by sRAE-1 or α-CD3/sRAE-1 was involved with the AP-1, NF-κB, and STAT3 signaling pathways; therefore, regulation of AP-1, NF-κB, and STAT3 activation may play important roles in the development and function of NK1.1-CD4+NKG2D+ cells.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2018 Tipo de documento: Article