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PMID: 20394677 Published · ppublish English Journal Article

Differential involvement of the extracellular 6-O-endosulfatases Sulf1 and Sulf2 in brain development and neuronal and behavioural plasticity.

Journal of cellular and molecular medicine ·Vol. 13 ·No. 11-12 ·2009-00-00 ·Pages 4505-21

Kalus I, Salmen B, Viebahn C, von Figura K, Schmitz D, D'Hooge R, Dierks T

Abstract

The extracellular sulfatases Sulf1 and Sulf2 remove specific 6-O-sulfate groups from heparan sulfate, thereby modulating numerous signalling pathways underlying development and homeostasis. In vitro data have suggested that the two enzymes show functional redundancy. To elucidate their in vivo functions and to further address the question of a putative redundancy, we have generated Sulf1- and Sulf2-deficient mice. Phenotypic analysis of these animals revealed higher embryonic lethality of Sulf2 knockout mice, which can be associated with neuroanatomical malformations during embryogenesis. Sulf1 seems not to be essential for developmental or postnatal viability, as mice deficient in this sulfatase show no overt phenotype. However, neurite outgrowth deficits were observed in hippocampal and cerebellar neurons of both mutant mouse lines, suggesting that not only Sulf2 but also Sulf1 function plays a role in the developing nervous system. Behavioural analysis revealed differential deficits with regard to cage activity and spatial learning for Sulf1- and Sulf2-deficient mouse lines. In addition, Sulf1-specific deficits were shown for synaptic plasticity in the CA1 region of the hippocampus, associated with a reduced spine density. These results reveal that Sulf1 and Sulf2 fulfil non-redundant functions in vivo in the development and maintenance of the murine nervous system.

MeSH Terms
Animals Animals, Newborn Behavior, Animal Brain/embryology,enzymology Embryo Loss/enzymology,pathology,physiopathology Extracellular Space/enzymology Hippocampus/enzymology,pathology,physiopathology,ultrastructure Hydrocephalus/complications,enzymology,pathology,physiopathology Long-Term Potentiation/physiology Mice Mice, Inbred C57BL Nervous System Malformations/complications,enzymology,physiopathology Neurites/enzymology,pathology Neuronal Plasticity Neurons/enzymology,pathology Phenotype Sulfatases/deficiency,metabolism Sulfotransferases/deficiency,metabolism Synaptic Transmission/physiology
Chemicals
Sulf1 protein, mouse Sulfotransferases Sulf2 protein, mouse Sulfatases
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Kalus Ina
Department of Chemistry, Biochemistry I, Bielefeld University, Bielefeld, Germany.
Salmen Benedikt
Viebahn Christoph
von Figura Kurt
Schmitz Dietmar
D'Hooge Rudi
Dierks Thomas
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Article Info
Journal
Journal of cellular and molecular medicine
Abbr.
J Cell Mol Med
ISSN
1582-4934
Published
2009-00-00
Pages
4505-21
Language
English
Region
England
NLM ID
101083777
PMCID
PMC4515066
Subset
IM
Analysis Services
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