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Title: PTPBR7 binding proteins in myelinating neurons of the mouse brain
Author(s): Chesini, I.M. (31427829X)
Debyser, G.
Croes, H.J.E. (298975076)
Dam, G.B. ten (18883544X)
Devreese, B.
Stoker, A.W.
Hendriks, W.J.A.J. (073985775)
Publication year: 2011
Document type: Article / Letter to editor
Journal: International Journal of Biological Sciences
ISSN: 1449-2288
Volume: vol. 7
Issue: iss. 7
Start page: p. 978
End page: p. 991
Annotation: Chesini, Irene M Debyser, Griet Croes, Huib Ten Dam, Gerdy B Devreese, Bart Stoker, Andrew W Hendriks, Wiljan J A J Research Support, Non-U.S. Gov't Australia Int J Biol Sci. 2011;7(7):978-91. Epub 2011 Aug 9.
Abstract: Mouse protein tyrosine phosphatase PTPBR7 is a receptor-like, transmembrane protein that is localized on the surface of neuronal cells. Its protein phosphatase activity is reduced upon multimerization, and PTPBR7-deficient mice display motor coordination defects. Extracellular molecules that may influence PTPBR7 activity, however, remain to be determined. We here show that the PTPBR7 extracellular domain binds to highly myelinated regions in mouse brain, in particular the white matter tracks in cerebellum. PTPBR7 deficiency does not alter this binding pattern, as witnessed by RAP in situ staining of Ptprr/ mouse brain sections. Additional in situ and in vitro experiments also suggest that sugar moieties of heparan sulphate and chondroitin sulphate glycosaminoglycans are not critical for PTPBR7 binding. Candidate binding proteins were affinity-purified exploiting the PTPBR7 extracellular domain and identified by mass spectrometric means. Results support the suggested link between PTPRR isoforms and cerebellar calcium ion homeostasis, and suggest an additional role in the process of cell-cell adhesion.
Subject: NCMLS 1C: Tissue engineering and pathology
NCMLS 3B: Chemical and physical biology DCN 2: Functional Neurogenomics
Organization: Cell Biology (UMCN)
UMCN Extern
Biochemistry (UMCN)
Appears in Collections:Academic bibliography

Please use this identifier to cite or link to this item: http://hdl.handle.net/2066/96174

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