Role of LRRK2 in manganese-induced neuroinflammation and microglial autophagy

被引:51
作者
Chen, Jiayan
Su, Peng
Luo, Wenjing [1 ,2 ]
Chen, Jingyuan [1 ]
机构
[1] Fourth Mil Med Univ, Sch Publ Hlth, Dept Occupat & Environm Hlth, 169 Changlexi Rd, Xian 710032, Shaanxi, Peoples R China
[2] Fourth Mil Med Univ, Sch Publ Hlth, Key Lab Hazard Assessment & Control Special Opera, Minist Educ, 169 Changlexi Rd, Xian 710032, Shaanxi, Peoples R China
关键词
Manganese; Microglia; Neuroinflammation; LRRK2; Autophagy; ALPHA-SYNUCLEIN; PARKINSONS-DISEASE; CELL-DEATH; IN-VITRO; ACTIVATION; EXPRESSION; MODEL;
D O I
10.1016/j.bbrc.2018.02.007
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
Overexposure to manganese (Mn) leads to manganism and neurotoxicity induced by Mn is the focus of recent research. Microglia play a vital role in Mn-induced neurotoxicity, and our previous studies firstly showed that Mn could stimulate activation of microglia, leading to the neuroinflammation, and inhibition of microglial inflammation effectively attenuated Mn-induced death of dopamine neurons. However, the detailed mechanism of manganese-induced neuroinflammation is still unclear. Leucine rich repeat kinase 2 (LRRK2) is a key molecule in the pathogenesis of many neurodegenerative disorders. Recent studies have indicated that LRRK2, which is highly expressed in microglia, plays a specific role in microglia and autophagy process. In this paper, we try to find the effect of LRRK2 on Mn-triggered neuroinflammation and its possible mechanism in vivo and in vitro. By establishing a Mn exposure animal model, our studies found that Mn exposure could induce dopaminergic neurons damage and activate microglia. Activated microglia triggered neuroinflammation by releasing multiple inflammatory cytokines, and the expression of LRRK2 was upregulated in vivo and in vitro. We also found that Mn exposure induced autophagy dysfunction in vivo and in vitro. Next, we used LRRK2 siRNA and LRRK2-IN-1 to inhibit the expression of LRRK2, and found that inhibition of LRRK2 could not only decrease the expression of inflammatory cytokines, but also recover autophagic function of microglia. Our investigation not only reveals the role of LRRK2 in Mn-induced neuroinflammation but also sheds light on the prevention and protection of manganism. (C) 2018 Elsevier Inc. All rights reserved.
引用
收藏
页码:171 / 177
页数:7
相关论文
共 40 条
[11]   The Parkinson disease-associated protein kinase LRRK2 exhibits MAPKKK activity and phosphorylates MKK3/6 and MKK4/7, in vitro [J].
Gloeckner, Christian Johannes ;
Schumacher, Annette ;
Boldt, Karsten ;
Ueffing, Marius .
JOURNAL OF NEUROCHEMISTRY, 2009, 109 (04) :959-968
[12]   Quantitative neuropathology associated with chronic manganese exposure in South African mine workers [J].
Gonzalez-Cuyar, Luis F. ;
Nelson, Gill ;
Criswell, Susan R. ;
Ho, Pokuan ;
Lonzanida, Jaymes A. ;
Checkoway, Harvey ;
Seixas, Noah ;
Gelman, Benjamin B. ;
Evanoff, Bradley A. ;
Murray, Jill ;
Zhang, Jing ;
Racette, Brad A. .
NEUROTOXICOLOGY, 2014, 45 :260-266
[13]   Parkinson's disease-linked LRRK2 is expressed in circulating and tissue immune cells and upregulated following recognition of microbial structures [J].
Hakimi, Mansoureh ;
Selvanantham, Thirumahal ;
Swinton, Erika ;
Padmore, Ruth F. ;
Tong, Youren ;
Kabbach, Ghassan ;
Venderova, Katerina ;
Girardin, Stephen E. ;
Bulman, Dennis E. ;
Scherzer, Clemens R. ;
LaVoie, Matthew J. ;
Gris, Denis ;
Park, David S. ;
Angel, Jonathan B. ;
Shen, Jie ;
Philpott, Dana J. ;
Schlossmacher, Michael G. .
JOURNAL OF NEURAL TRANSMISSION, 2011, 118 (05) :795-808
[14]   Activation of Autophagy Pathway Suppresses the Expression of iNOS, IL6 and Cell Death of LPS-Stimulated Microglia Cells [J].
Han, Hye-Eun ;
Kim, Tae-Kyung ;
Son, Hyung-Jin ;
Park, Woo Jin ;
Han, Pyung-Lim .
BIOMOLECULES & THERAPEUTICS, 2013, 21 (01) :21-28
[15]   Autophagy Controls IL-1β Secretion by Targeting Pro-IL-1β for Degradation [J].
Harris, James ;
Hartman, Michelle ;
Roche, Caitrionna ;
Zeng, Shijuan G. ;
O'Shea, Amy ;
Sharp, Fiona A. ;
Lambe, Eimear M. ;
Creagh, Emma M. ;
Golenbock, Douglas T. ;
Tschopp, Jurg ;
Kornfeld, Hardy ;
Fitzgerald, Katherine A. ;
Lavelle, Ed C. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2011, 286 (11) :9587-9597
[16]  
Healy D G, 2008, Pract Neurol, V8, P381, DOI 10.1136/jnnp.2008.162420
[17]   LRRK2 knockout mice have an intact dopaminergic system but display alterations in exploratory and motor co-ordination behaviors [J].
Hinkle, Kelly M. ;
Yue, Mei ;
Behrouz, Bahareh ;
Daechsel, Justus C. ;
Lincoln, Sarah J. ;
Bowles, Erin E. ;
Beevers, Joel E. ;
Dugger, Brittany ;
Winner, Beate ;
Prots, Iryna ;
Kent, Caroline B. ;
Nishioka, Kenya ;
Lin, Wen-Lang ;
Dickson, Dennis W. ;
Janus, Christopher J. ;
Farrer, Matthew J. ;
Melrose, Heather L. .
MOLECULAR NEURODEGENERATION, 2012, 7
[18]   Physiology of Microglia [J].
Kettenmann, Helmut ;
Hanisch, Uwe-Karsten ;
Noda, Mami ;
Verkhratsky, Alexei .
PHYSIOLOGICAL REVIEWS, 2011, 91 (02) :461-553
[19]  
Kraft A. D., 2003, INT J ENV RES PUB HE, V8, P137
[20]   Effect of Microglia Activation on Dopaminergic Neuronal Injury Induced by Manganese, and Its Possible Mechanism [J].
Liu, Mingchao ;
Cai, Tongjian ;
Zhao, Fang ;
Zheng, Gang ;
Wang, Qiang ;
Chen, Yaoming ;
Huang, Chuanshu ;
Luo, Wenjing ;
Chen, Jingyuan .
NEUROTOXICITY RESEARCH, 2009, 16 (01) :42-49