Chondroitin Sulfate Proteoglycans Negatively Modulate Spinal Cord Neural Precursor Cells by Signaling Through LAR and RPTPσ and Modulation of the Rho/ROCK Pathway

被引:66
作者
Dyck, Scott M. [1 ]
Alizadeh, Arsalan [1 ]
Santhosh, Kallivalappil T. [1 ]
Proulx, Evan H. [1 ]
Wu, Chia-Lun [2 ]
Karimi-Abdolrezaee, Soheila [1 ,3 ,4 ]
机构
[1] Univ Manitoba, Fac Hlth Sci, Regenerat Med Program, Dept Physiol & Pathophysiol, Winnipeg, MB R3E 0J9, Canada
[2] McGill Univ, Dept Biochem, Montreal, PQ, Canada
[3] Dept Biochem & Med Genet, Winnipeg, MB, Canada
[4] Childrens Hosp Res Inst Manitoba, Winnipeg, MB, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
Adult neural precursor cells; Chondroitin sulfate proteoglycan; Cell differentiation; Leukocyte common antigen-related phosphatase; Receptor protein tyrosine phosphate sigma; Erk1/2; Akt; Rho; PROMOTES FUNCTIONAL RECOVERY; STEM/PROGENITOR CELLS; AXONAL REGENERATION; STEM-CELLS; GROWTH-INHIBITION; INJURY; RECEPTOR; PHOSPHATASE; RHO; ABC;
D O I
10.1002/stem.1979
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Multipotent adult neural precursor cells (NPCs) have tremendous intrinsic potential to repair the damaged spinal cord. However, evidence shows that the regenerative capabilities of endogenous and transplanted NPCs are limited in the microenvironment of spinal cord injury (SCI). We previously demonstrated that injury-induced upregulation of matrix chondroitin sulfate proteoglycans (CSPGs) restricts the survival, migration, integration, and differentiation of NPCs following SCI. CSPGs are long-lasting components of the astroglial scar that are formed around the lesion. Our recent in vivo studies demonstrated that removing CSPGs from the SCI environment enhances the potential of transplanted and endogenous adult NPCs for spinal cord repair; however, the mechanisms by which CSPGs regulate NPCs remain unclear. In this study, using in vitro models recapitulating the extracellular matrix of SCI, we investigated the direct role of CSPGs in modulating the properties of adult spinal cord NPCs. We show that CSPGs significantly decrease NPCs growth, attachment, survival, proliferation, and oligodendrocytes differentiation. Moreover, using genetic models, we show that CSPGs regulate NPCs by signaling on receptor protein tyrosine phosphate sigma (RPTP sigma) and leukocyte common antigen-related phosphatase (LAR). Intracellularly, CSPGs inhibitory effects are mediated through Rho/ROCK pathway and inhibition of Akt and Erk1/2 phosphorylation. Downregulation of RPTP sigma and LAR and blockade of ROCK in NPCs attenuates the inhibitory effects of CSPGS. Our work provide novel evidence uncovering how upregulation of CSPGs challenges the response of NPCs in their post-SCI niche and identifies new therapeutic targets for enhancing NPC-based therapies for SCI repair.
引用
收藏
页码:2550 / 2563
页数:14
相关论文
共 74 条
[1]   Functional regeneration of respiratory pathways after spinal cord injury [J].
Alilain, Warren J. ;
Horn, Kevin P. ;
Hu, Hongmei ;
Dick, Thomas E. ;
Silver, Jerry .
NATURE, 2011, 475 (7355) :196-U95
[2]   Examination of the Combined Effects of Chondroitinase ABC, Growth Factors and Locomotor Training following Compressive Spinal Cord Injury on Neuroanatomical Plasticity and Kinematics [J].
Alluin, Olivier ;
Delivet-Mongrain, Hugo ;
Gauthier, Marie-Krystel ;
Fehlings, Michael G. ;
Rossignol, Serge ;
Karimi-Abdolrezaee, Soheila .
PLOS ONE, 2014, 9 (10)
[3]   Chronic spinal hemisection in rats induces a progressive decline in transmission in uninjured fibers to motoneurons [J].
Arvanian, Victor L. ;
Schnell, Lisa ;
Lou, Li ;
Golshani, Roozbeh ;
Hunanyan, Arsen ;
Ghosh, Arko ;
Pearse, Damien D. ;
Robinson, John K. ;
Schwab, Martin E. ;
Fawcett, James W. ;
Mendell, Lorne M. .
EXPERIMENTAL NEUROLOGY, 2009, 216 (02) :471-480
[4]   Origin of New Glial Cells in Intact and Injured Adult Spinal Cord [J].
Barnabe-Heider, Fanie ;
Goritz, Christian ;
Sabelstrom, Hanna ;
Takebayashi, Hirohide ;
Pfrieger, Frank W. ;
Meletis, Konstantinos ;
Frisen, Jonas .
CELL STEM CELL, 2010, 7 (04) :470-482
[5]   Chondroitinase ABC promotes sprouting of intact and injured spinal systems after spinal cord injury [J].
Barritt, A. W. ;
Davies, M. ;
Marchand, F. ;
Hartley, R. ;
Grist, J. ;
Yip, P. ;
McMahon, S. B. ;
Bradbury, E. J. .
JOURNAL OF NEUROSCIENCE, 2006, 26 (42) :10856-10867
[6]   Chondroitinase ABC promotes functional recovery after spinal cord injury [J].
Bradbury, EJ ;
Moon, LDF ;
Popat, RJ ;
King, VR ;
Bennett, GS ;
Patel, PN ;
Fawcett, JW ;
McMahon, SB .
NATURE, 2002, 416 (6881) :636-640
[7]  
Buss A, 2009, BMC NEUROL, V9
[8]   Differential regulation of proliferation and neuronal differentiation in adult rat spinal cord neural stem/progenitors by ERK1/2, Akt, and PLCγ [J].
Chan, Wai Si ;
Sideris, Alexandra ;
Sutachan, Jhon J. ;
Montoya, Jose V. G. ;
Blanck, Thomas J. J. ;
Recio-Pinto, Esperanza .
FRONTIERS IN MOLECULAR NEUROSCIENCE, 2013, 6
[9]   Proteoglycan-Specific Molecular Switch for RPTPσ Clustering and Neuronal Extension [J].
Coles, Charlotte H. ;
Shen, Yingjie ;
Tenney, Alan P. ;
Siebold, Christian ;
Sutton, Geoffrey C. ;
Lu, Weixian ;
Gallagher, John T. ;
Jones, E. Yvonne ;
Flanagan, John G. ;
Aricescu, A. Radu .
SCIENCE, 2011, 332 (6028) :484-488
[10]   Prolonged lesional expression of RhoA and RhoB following spinal cord injury [J].
Conrad, S ;
Schluesener, HJ ;
Trautmann, K ;
Joannin, N ;
Meyermann, R ;
Schwab, JM .
JOURNAL OF COMPARATIVE NEUROLOGY, 2005, 487 (02) :166-175