A chondroitin sulfate proteoglycan PTPζ/RPTP/β regulates the morphogenesis of Purkinje cell dendrites in the developing cerebellum

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Abstract

PTPζ/RPTPβ, a receptor-type protein tyrosine phosphatase synthesized as a chondroitin sulfate (CS) proteoglycan, uses a heparin-binding growth factor pleiotrophin (PTN) as a ligand, in which the CS portion plays an essential role in ligand binding. Using an organotypic slice culture system, we tested the hypothesis that PTN-PTPζ signaling is involved in the morphogenesis of Purkinje cell dendrites. An aberrant morphology of Purkinje cell dendrites such as multiple and disoriented primary dendrites was induced in slice cultures by (1) addition of a polyclonal antibody against the extracellular domain of PTPζ, (2) inhibition of protein tyrosine phosphatase activity, (3) enzymatic removal of the CS chains, (4) addition of exogenous CS chains, and (5) addition of exogenous PTN, all of which disturb PTN-PTPζ signaling. These treatments also reduced the immunoreactivity to GLAST, a glial glutamate transporter, on Bergmann glial processes. Furthermore, a glutamate transporter inhibitor also induced the abnormal morphogenesis of Purkinje cell dendrites. Altogether, these findings suggest that PTN-PTPζ signaling regulates the morphogenesis of Purkinje cell dendrites and that the mechanisms underlying that regulation involve the GLAST activity in Bergmann glial processes.

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Tanaka, M., Maeda, N., Noda, M., & Marunouchi, T. (2003). A chondroitin sulfate proteoglycan PTPζ/RPTP/β regulates the morphogenesis of Purkinje cell dendrites in the developing cerebellum. Journal of Neuroscience, 23(7), 2804–2814. https://doi.org/10.1523/jneurosci.23-07-02804.2003

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