The flagellin-TLR5-Nox4 axis promotes the migration of smooth muscle cells in atherosclerosis

被引:25
作者
Kim, Jinoh [1 ]
Yoo, Jung-Yeon [1 ]
Suh, Jung Min [1 ]
Park, Sujin [1 ]
Kang, Dongmin [1 ]
Jo, Hanjoong [2 ]
Bae, Yun Soo [1 ]
机构
[1] Ewha Womans Univ, Dept Life Sci, Seoul, South Korea
[2] Emory Univ, Dept Biotechnol, Atlanta, GA 30322 USA
基金
新加坡国家研究基金会;
关键词
TOLL-LIKE RECEPTORS; IL-6; EXPRESSION; INTERLEUKIN-6; INFLAMMATION; ACTIVATION; PROTEIN; PATHOPHYSIOLOGY; OXIDASE-4; TLR4;
D O I
10.1038/s12276-019-0275-6
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We hypothesized that NADPH oxidase 4 (Nox4) is involved in the formation of neointimal atherosclerotic plaques through the migration of smooth muscle cells (SMCs) in response to flagellin. Here, we demonstrate that TLR5mediated Nox4 activation regulates the migration of SMCs, leading to neointimal plaque formation in atherosclerosis. To investigate the molecular mechanism by which the TLR5-Nox4 cascade mediates SMC migration, we analyzed the signaling cascade in primary vascular SMCs (VSMCs) from wild-type (WT) or Nox4 KO mice. Stimulation of VSMCs from Nox4 KO mice with flagellin failed to induce H2O2 production and Rac activation compared with stimulation of VSMCs from WT mice. Moreover, the migration of Nox4-deficient VSMCs was attenuated in response to flagellin in transwell migration and wound healing assays. Finally, we performed partial carotid artery ligation in ApoE KO and Nox4ApoE DKO mice fed a high-fat diet (HFD) with or without recombinant FliC (rFliC) injection. Injection of rFliC into ApoE KO mice fed a HFD resulted in significantly increased SMC migration into the intimal layer, whereas SMC accumulation was not detected in Nox4ApoE DKO mice. We conclude that activation of the TLR5-Nox4 cascade plays an important role in the formation of neointimal atherosclerotic plaques.
引用
收藏
页码:1 / 13
页数:13
相关论文
共 50 条
  • [21] NLRC5 modulates phenotypic transition and inflammation of human venous smooth muscle cells by activating Wnt/β-catenin pathway via TLR4 in varicose veins
    Fang, Tao
    Sun, Shaojun
    Zhao, Bingjie
    Dong, Jianxin
    Cao, Kai
    Wang, Wenli
    MICROVASCULAR RESEARCH, 2022, 143
  • [22] MicroRNA-574-5p promotes cell growth of vascular smooth muscle cells in the progression of coronary artery disease
    Lai, Zhongmeng
    Lin, Pengtao
    Weng, Xianfeng
    Su, Jiansheng
    Chen, Ye
    He, Ying
    Wu, Guohua
    Wang, Jiebo
    Yu, Ying
    Zhang, Liangcheng
    BIOMEDICINE & PHARMACOTHERAPY, 2018, 97 : 162 - 167
  • [23] C-Reactive Protein Induces TNF-α Secretion by p38 MAPK-TLR4 Signal Pathway in Rat Vascular Smooth Muscle Cells
    Liu, Na
    Liu, Juntian
    Ji, Yuanyuan
    Lu, Peipei
    Wang, Chenjing
    Guo, Fang
    INFLAMMATION, 2011, 34 (04) : 283 - 290
  • [24] miRNA 146b-5p protects against atherosclerosis by inhibiting vascular smooth muscle cell proliferation and migration
    Sun, Dating
    Xiang, Gui
    Wang, Jing
    Li, Yuanyuan
    Mei, Shuai
    Ding, Hu
    Yan, Jiangtao
    EPIGENOMICS, 2020, 12 (24) : 2189 - 2204
  • [25] Glycation of high-density lipoprotein triggers oxidative stress and promotes the proliferation and migration of vascular smooth muscle cells
    Du, Qian
    Qian, Ming-Ming
    Liu, Pin-Li
    Zhang, Le
    Wang, Yan
    Liu, Dong-Hui
    JOURNAL OF GERIATRIC CARDIOLOGY, 2017, 14 (07) : 473 - 480
  • [26] Lipocalin-2 elicited by advanced glycation end-products promotes the migration of vascular smooth muscle cells
    Chung, Tae-Wook
    Choi, Hee-Jung
    Kim, Cheorl-Ho
    Jeong, Han-Sol
    Ha, Ki-Tae
    BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR CELL RESEARCH, 2013, 1833 (12): : 3386 - 3395
  • [27] EBP50 promotes focal adhesion turnover and vascular smooth muscle cells migration
    Song, Gyun Jee
    Leslie, Kristen L.
    Barrick, Stacey
    Bougoin, Sylvain
    Taboas, Juan M.
    Bisello, Alessandro
    JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 2012, 53 (06) : 809 - 819
  • [28] MFAP4 Promotes Vascular Smooth Muscle Migration, Proliferation and Accelerates Neointima Formation
    Schlosser, Anders
    Pilecki, Bartosz
    Hemstra, Line E.
    Kejling, Karin
    Kristmannsdottir, Gudlaug B.
    Wulf-Johansson, Helle
    Moeller, Jesper B.
    Fuchtbauer, Ernst-Martin
    Nielsen, Ole
    Kirketerp-Moller, Katrine
    Dubey, Lalit K.
    Hansen, Pernille B. L.
    Stubbe, Jane
    Wrede, Christoph
    Hegermann, Jan
    Ochs, Matthias
    Rathkolb, Birgit
    Schrewe, Anja
    Bekeredjian, Raffi
    Wolf, Eckhard
    Gailus-Durner, Valerie
    Fuchs, Helmut
    de Angelis, Martin Hrabe
    Lindholt, Jes S.
    Holmskov, Uffe
    Sorensen, Grith L.
    ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2016, 36 (01) : 122 - 133
  • [29] The PGC-1α/NRF1/miR-378a axis protects vascular smooth muscle cells from FFA-induced proliferation, migration and inflammation in atherosclerosis
    Chong, Hoshun
    Wei, Zhe
    Namuhan
    Sun, Gongrui
    Zheng, Shasha
    Zhu, Xiyu
    Xue, Yunxing
    Zhou, Qing
    Guo, Shanjun
    Xu, Jinhong
    Wang, Haoquan
    Cui, Le
    Zhang, Chen-Yu
    Jiang, Xiaohong
    Wang, Dongjin
    ATHEROSCLEROSIS, 2020, 297 : 136 - 145
  • [30] Defective Base Excision Repair of Oxidative DNA Damage in Vascular Smooth Muscle Cells Promotes Atherosclerosis
    Shah, Aarti
    Gray, Kelly
    Figg, Nichola
    Finigan, Alison
    Starks, Lakshi
    Bennett, Martin
    CIRCULATION, 2018, 138 (14) : 1446 - 1462