Proteoglycans and injury of the central nervous system
- 3 December 2004
- journal article
- review article
- Published by Wiley in Congenital Anomalies
- Vol. 44 (4) , 181-188
- https://doi.org/10.1111/j.1741-4520.2004.00038.x
Abstract
Proteoglycan is a family of glycoproteins which carry covalently-linked glycosaminoglycan chains, such as chondroitin sulfate and heparan sulfate. Proteoglycans are believed to play important roles in morphogenesis and maintenance of various tissues including the central nervous system (CNS) through interactions with cell adhesion molecules and growth factors. In the CNS, a significant amount of evidence has been accumulated to show that proteoglycans function as modulators in various cellular events not only in the development, but also in the pathogenesis of neuronal diseases and lesions. When the CNS is injured, several chondroitin sulfate proteoglycans (CSPG) are up-regulated in glial scars formed around the lesion site. The glial scar also contains some molecules inhibitory to axonal growth, such as myelin-associated glycoprotein, Nogo, and Semaphorin. In vitro studies revealed that CSPG largely exert a repulsive effect on axonal regeneration, and a signal from CSPG modulates the actin cytoskeleton of outgrowing neurites through the Rho/ROCK pathway. These findings suggest that CSPG are responsible for unsuccessful axonal regeneration in glial scars. Various attempts to overcome the inhibitory effect of CSPG have been pursued in vivo. Digestion of chondroitin sulfate chains by chondroitinase ABC, suppression of CSPG core protein synthesis by decorin, suppression of glycosaminoglycan chain synthesis by a DNA enzyme, and inhibition of the Rho/ROCK pathway with specific inhibitors were all successful for increasing axonal regeneration. For a clinical application, the most effective combination of these treatments needs to be examined in the future.Keywords
This publication has 56 references indexed in Scilit:
- Decorin suppresses neurocan, brevican, phosphacan and NG2 expression and promotes axon growth across adult rat spinal cord injuriesEuropean Journal of Neuroscience, 2004
- PKC mediates inhibitory effects of myelin and chondroitin sulfate proteoglycans on axonal regenerationNature Neuroscience, 2004
- Keratan Sulfate Proteoglycan Phosphacan Regulates Mossy Fiber Outgrowth and RegenerationJournal of Neuroscience, 2004
- Phosphacan and neurocan are repulsive substrata for adhesion and neurite extension of adult rat dorsal root ganglion neurons in vitroExperimental Neurology, 2003
- Ascending sensory, but not other long‐tract axons, regenerate into the connective tissue matrix that forms at the site of a spinal cord injury in miceJournal of Comparative Neurology, 2003
- Slit and glypican‐1 mRNAs are coexpressed in the reactive astrocytes of the injured adult brainGlia, 2003
- Nervous system–derived chondroitin sulfate proteoglycans regulate growth cone morphology and inhibit neurite outgrowth: A light, epifluorescence, and electron microscopy studyMicroscopy Research and Technique, 2001
- Differential Regulation of Expression of Hyaluronan-Binding Proteoglycans in Developing Brain: Aggrecan, Versican, Neurocan, and BrevicanBiochemical and Biophysical Research Communications, 1998
- Neurons as well as astrocytes express proteoglycan-type protein tyrosine phosphatase ζ/RPTPβ: analysis of mice in which the PTPζ/RPTPβ gene was replaced with the LacZ geneNeuroscience Letters, 1998
- Cerebroglycan: an integral membrane heparan sulfate proteoglycan that is unique to the developing nervous system and expressed specifically during neuronal differentiationThe Journal of cell biology, 1994