Glycerophosphodiesterase GDE2 Promotes Neuroblastoma Differentiation through Glypican Release and Is a Marker of Clinical Outcome
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Description: Artículo publicado en revista Cancers cells, octubre 2016, 10;30(4):548-562. doi: 10.1016/j.ccell.2016.08.016.
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Matas-Rico, Elisa
van Veen, Wouter H
Leyton-Puig, Daniela
van den Berg, Jeroen
Koster, Jan
Kedziora, Katarzyna M
Molenaar, Bas
J A Weerts, Marjolein
de Rink, Iris
Medema, René H
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Elsevier
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Neuroblastoma is a pediatric embryonal malignancy characterized by impaired neuronal differentiation.
A better understanding of neuroblastoma differentiation is essential for developing new therapeutic
approaches. GDE2 (encoded by GDPD5) is a six-transmembrane-domain glycerophosphodiesterase
that promotes embryonic neurogenesis. We find that high GDPD5 expression is strongly associated
with favorable outcome in neuroblastoma. GDE2 induces differentiation of neuroblastoma cells, suppresses cell motility, and opposes RhoA-driven neurite retraction. GDE2 alters the Rac-RhoA activity
balance and the expression of multiple differentiation-associated genes. Mechanistically, GDE2 acts
by cleaving (in cis) and releasing glycosylphosphatidylinositol-anchored glypican-6, a putative co-receptor. A single point mutation in the ectodomain abolishes GDE2 function. Our results reveal GDE2
as a cell-autonomous inducer of neuroblastoma differentiation with prognostic significance and potential therapeutic value.
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Elisa Matas-Rico, Michiel van Veen, Daniela Leyton-Puig, Jeroen van den Berg, Jan Koster, Katarzyna M. Kedziora, Bas Molenaar, Marjolein J.A. Weerts, Iris de Rink, René H. Medema, Ben N.G. Giepmans, Anastassis Perrakis, Kees Jalink, Rogier Versteeg, Wouter H. Moolenaar, Glycerophosphodiesterase GDE2 Promotes Neuroblastoma Differentiation through Glypican Release and Is a Marker of Clinical Outcome, Cancer Cell, Volume 30, Issue 4, 2016, Pages 548-562, ISSN 1535-6108, https://doi.org/10.1016/j.ccell.2016.08.016.
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