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Inhibition of angiogenesis by β-galactosylceramidase deficiency in globoid cell leukodystrophy
Author(s) -
Mirella Belleri,
Roberto Ronca,
Daniela Coltrini,
Beatrice Nico,
Doménico Ribatti,
Pietro Luigi Poliani,
Arianna Giacomini,
Patrizia Alessi,
Sergio Marchesini,
Marta B. Santos,
Ernesto R. Bongarzone,
Marco Presta
Publication year - 2013
Publication title -
brain
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.142
H-Index - 336
eISSN - 1460-2156
pISSN - 0006-8950
DOI - 10.1093/brain/awt215
Subject(s) - leukodystrophy , krabbe disease , biology , angiogenesis , endothelial stem cell , metachromatic leukodystrophy , microbiology and biotechnology , endothelium , pathology , immunology , cancer research , endocrinology , medicine , biochemistry , disease , in vitro
Globoid cell leukodystrophy (Krabbe disease) is a neurological disorder of infants caused by genetic deficiency of the lysosomal enzyme β-galactosylceramidase leading to accumulation of the neurotoxic metabolite 1-β-d-galactosylsphingosine (psychosine) in the central nervous system. Angiogenesis plays a pivotal role in the physiology and pathology of the brain. Here, we demonstrate that psychosine has anti-angiogenic properties by causing the disassembling of endothelial cell actin structures at micromolar concentrations as found in the brain of patients with globoid cell leukodystrophy. Accordingly, significant alterations of microvascular endothelium were observed in the post-natal brain of twitcher mice, an authentic model of globoid cell leukodystrophy. Also, twitcher endothelium showed a progressively reduced capacity to respond to pro-angiogenic factors, defect that was corrected after transduction with a lentiviral vector harbouring the murine β-galactosylceramidase complementary DNA. Finally, RNA interference-mediated β-galactosylceramidase gene silencing causes psychosine accumulation in human endothelial cells and hampers their mitogenic and motogenic response to vascular endothelial growth factor. Accordingly, significant alterations were observed in human microvasculature from brain biopsy of a globoid cell leukodystrophy case. Together these data demonstrate that β-galactosylceramidase deficiency induces significant alterations in endothelial neovascular responses that may contribute to central nervous system and systemic damages that occur in globoid cell leukodystrophy.

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