TRAF3IP3 at the trans-Golgi network regulates NKT2 maturation via the MEK/ERK signaling pathway

被引:0
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作者
Xinwei Zhang
Ke Wang
Weijia Zhao
Li Cao
Shusong Zhang
Rong Jin
Xiuyuan Sun
Jie Hao
Xiaojun Huang
Mingzhao Zhu
Hounan Wu
Hongshan Zhao
Qing Ge
机构
[1] Peking University,Department of Immunology, School of Basic Medical Sciences
[2] NHC Key Laboratory of Medical Immunology (Peking University),Beijing Key Laboratory of Hematopoietic Stem Cell Transplantation
[3] Peking University People’s Hospital & Institute of Hematology,Key Laboratory of Infection and Immunity, Institute of Biophysics
[4] Chinese Academy of Sciences,Department of Integration of Chinese and Western Medicine, School of Basic Medical Sciences
[5] Peking University Medical and Health Analytical Center,undefined
[6] Peking University Health Science Center,undefined
[7] Peking University,undefined
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TRAF3IP3; NKT2 cells; MEK/ERK signaling; Functional maturation;
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摘要
Thymic natural killer T (NKT)2 cells are a subset of invariant NKT cells with PLZFhiGATA3hiIL-4+. The differentiation of NKT2 cells is not fully understood. In the present study, we report an important role of TRAF3-interacting protein 3 (TRAF3IP3) in the functional maturation and expansion of committed NKT2s in thymic medulla. Mice with T-cell-specific deletion of TRAF3IP3 had decreased thymic NKT2 cells, decreased IL-4-producing peripheral iNKTs, and defects in response to α-galactosylceramide. Positive selection and high PLZF expression in CD24+CD44− and CCR7+CD44− immature iNKTs were not affected. Only CD44hiNK1.1− iNKTs in Traf3ip3−/− mice showed reduced expression of Egr2, PLZF, and IL-17RB, decreased proliferation, and reduced IL-4 production upon stimulation. This Egr2 and IL-4 expression was augmented by MEK1/ERK activation in iNKTs, and TRAF3IP3 at the trans-Golgi network recruited MEK1 and facilitated ERK phosphorylation and nuclear translocation. LTβR-regulated bone marrow-derived nonlymphoid cells in the medullary thymic microenvironment were required for MEK/ERK activation and NKT2 maturation. These data demonstrate an important functional maturation process in NKT2 differentiation that is regulated by MEK/ERK signaling at the trans-Golgi network.
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页码:395 / 406
页数:11
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