Upregulation of miRNA-223-3p ameliorates RIP3-mediated necroptosis and inflammatory responses via targeting RIP3 after spinal cord injury

被引:27
作者
Wang, Yang [1 ]
Jiao, Jianhang [1 ]
Ren, Pengfei [1 ]
Wu, Minfei [1 ]
机构
[1] Jilin Univ, Hosp 2, Dept Orthoped, Changchun 130041, Jilin, Peoples R China
关键词
inflammatory responses; miRNA-223-3p; necroptosis; receptor-interacting protein 3; spinal cord injury; INDUCED OXIDATIVE STRESS; PROGRAMMED NECROSIS; CELL-DEATH; MICRORNA EXPRESSION; BRAIN-INJURY; APOPTOSIS; TRANSPLANTATION; ACTIVATION; AUTOPHAGY; REPAIR;
D O I
10.1002/jcb.28438
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
Spinal cord injury (SCI) has been a major burden on the society because of the high rate of disability. Receptor-interacting protein 3 (RIP3)-mediated necroptosis is a newly discovered pathway of programmed cell death and is involved in multiple pathologies of various human diseases. Micro RNAs (miRNAs) have been shown to be a potential target for therapeutic interventions after SCI. The aim of the present study is to explore the potential role of miR-223-3p and possible mechanism in SCI. We found that miR-223-3p was significantly downregulated in spinal neurons after H2O (2)-induced damage, while RIP3-mediated necroptosis was elevated. Accordingly, RIP3-mediated necroptosis and the inflammatory factor secretion could be significantly inhibited by Nec-1 treatment. In adittion, overexpression of miR-223-3p in spinal neurons protected against H O-2 (2)-induced necroptosis, and ablation of miR-223-3p exhibited the opposite effect. We found that miR-223-3p bound to the 3-untranslated region of RIP3 mRNA to negatively regulate the expression of RIP3. Moreover, the activated RIP3 reversed the inhibition of RIP3 and MLKL expression and the levels of TNF-, IL-1, and lactate dehydrogenase, which were induced by transfection with miR-223-3p in a H O-2 (2)-induced model. Finally, these results indicate that miR-223-3p negatively regulates the RIP3 necroptotic signaling cascades and inflammatory factor secretion, which significantly relieves injury of spinal neurons. The miR-223-3p/RIP3 pathway offers a novel therapeutic target for the protection of spinal neurons after SCI.
引用
收藏
页码:11582 / 11592
页数:11
相关论文
共 54 条
  • [1] Traumatic spinal cord injury
    Ahuja, Christopher S.
    Wilson, Jefferson R.
    Nori, Satoshi
    Kotter, Mark R. N.
    Druschel, Claudia
    Curt, Armin
    Fehlings, Michael G.
    [J]. NATURE REVIEWS DISEASE PRIMERS, 2017, 3
  • [2] Traumatic Spinal Cord Injury-Repair and Regeneration
    Ahuja, Christopher S.
    Nori, Satoshi
    Tetreault, Lindsay
    Wilson, Jefferson
    Kwon, Brian
    Harrop, James
    Choi, David
    Fehlings, Michael G.
    [J]. NEUROSURGERY, 2017, 80 (03) : S9 - S22
  • [3] MicroRNA expression in the adult mouse central nervous system
    Bak, Mads
    Silahtaroglu, Asli
    Moller, Morten
    Christensen, Mette
    Rath, Martin F.
    Skryabin, Boris
    Tommerup, Niels
    Kauppinen, Sakari
    [J]. RNA, 2008, 14 (03) : 432 - 444
  • [4] Necrostatin-1 attenuates early brain injury after subarachnoid hemorrhage in rats by inhibiting necroptosis
    Chen, Fuxiang
    Su, Xingfen
    Lin, Zhangya
    Lin, Yuanxiang
    Yu, Lianghong
    Cai, Jiawei
    Kang, Dezhi
    Hu, Liwen
    [J]. NEUROPSYCHIATRIC DISEASE AND TREATMENT, 2017, 13 : 1771 - 1782
  • [5] MLKL Compromises Plasma Membrane Integrity by Binding to Phosphatidylinositol Phosphates
    Dondelinger, Yves
    Declercq, Wim
    Montessuit, Sylvie
    Roelandt, Ria
    Goncalves, Amanda
    Bruggeman, Inge
    Hulpiau, Paco
    Weber, Kathrin
    Sehon, Clark A.
    Marquis, Robert W.
    Bertin, John
    Gough, Peter J.
    Savvides, Savvas
    Martinou, Jean-Claude
    Bertrand, Mathieu J. M.
    Vandenabeele, Peter
    [J]. CELL REPORTS, 2014, 7 (04): : 971 - 981
  • [6] Tissue Engineering Approaches to Modulate the Inflammatory Milieu following Spinal Cord Injury
    Dumont, Courtney M.
    Margul, Daniel J.
    Shea, Lonnie D.
    [J]. CELLS TISSUES ORGANS, 2015, 202 (1-2) : 52 - 66
  • [7] Acute spinal cord injury, part I: Pathophysiologic mechanisms
    Dumont, RJ
    Okonkwo, DO
    Verma, RS
    Hurlbert, RJ
    Boulos, PT
    Ellegala, DB
    Dumont, AS
    [J]. CLINICAL NEUROPHARMACOLOGY, 2001, 24 (05) : 254 - 264
  • [8] Microenvironment Imbalance of Spinal Cord Injury
    Fan, Baoyou
    Wei, Zhijian
    Yao, Xue
    Shi, Guidong
    Cheng, Xin
    Zhou, Xianhu
    Zhou, Hengxing
    Ning, Guangzhi
    Kong, Xiaohong
    Feng, Shiqing
    [J]. CELL TRANSPLANTATION, 2018, 27 (06) : 853 - 866
  • [9] Molecular definitions of cell death subroutines: recommendations of the Nomenclature Committee on Cell Death 2012
    Galluzzi, L.
    Vitale, I.
    Abrams, J. M.
    Alnemri, E. S.
    Baehrecke, E. H.
    Blagosklonny, M. V.
    Dawson, T. M.
    Dawson, V. L.
    El-Deiry, W. S.
    Fulda, S.
    Gottlieb, E.
    Green, D. R.
    Hengartner, M. O.
    Kepp, O.
    Knight, R. A.
    Kumar, S.
    Lipton, S. A.
    Lu, X.
    Madeo, F.
    Malorni, W.
    Mehlen, P.
    Nunez, G.
    Peter, M. E.
    Piacentini, M.
    Rubinsztein, D. C.
    Shi, Y.
    Simon, H-U
    Vandenabeele, P.
    White, E.
    Yuan, J.
    Zhivotovsky, B.
    Melino, G.
    Kroemer, G.
    [J]. CELL DEATH AND DIFFERENTIATION, 2012, 19 (01) : 107 - 120
  • [10] PROGRAMMED NECROSIS: FROM MOLECULES TO HEALTH AND DISEASE
    Galluzzi, Lorenzo
    Vanden Berghe, Tom
    Vanlangenakker, Nele
    Buettner, Sabrina
    Eisenberg, Tobias
    Vandenabeele, Peter
    Madeo, Frank
    Kroemer, Guido
    [J]. INTERNATIONAL REVIEW OF CELL AND MOLECULAR BIOLOGY, VOL 289, 2011, 289 : 1 - 35