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PMID: 17934455 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Roles for the pro-neurotrophin receptor sortilin in neuronal development, aging and brain injury.

Nature neuroscience ·Vol. 10 ·No. 11 ·2007-11-00 ·Pages 1449-57

Jansen P, Giehl K, Nyengaard JR, Teng K, Lioubinski O, Sjoegaard SS, Breiderhoff T, Gotthardt M, Lin F, Eilers A, Petersen CM, Lewin GR, Hempstead BL, Willnow TE, Nykjaer A

Abstract

Neurotrophins are essential for development and maintenance of the vertebrate nervous system. Paradoxically, although mature neurotrophins promote neuronal survival by binding to tropomyosin receptor kinases and p75 neurotrophin receptor (p75(NTR)), pro-neurotrophins induce apoptosis in cultured neurons by engaging sortilin and p75(NTR) in a death-signaling receptor complex. Substantial amounts of neurotrophins are secreted in pro-form in vivo, yet their physiological significance remains unclear. We generated a sortilin-deficient mouse to examine the contribution of the p75(NTR)/sortilin receptor complex to neuronal viability. In the developing retina, Sortilin 1 (Sort1)(-/-) mice showed reduced neuronal apoptosis that was indistinguishable from that observed in p75(NTR)-deficient (Ngfr(-/-)) mice. To our surprise, although sortilin deficiency did not affect developmentally regulated apoptosis of sympathetic neurons, it did prevent their age-dependent degeneration. Furthermore, in an injury protocol, lesioned corticospinal neurons in Sort1(-/-) mice were protected from death. Thus, the sortilin pathway has distinct roles in pro-neurotrophin-induced apoptotic signaling in pathological conditions, but also in specific stages of neuronal development and aging.

MeSH Terms
Adaptor Proteins, Vesicular Transport Aging/metabolism Animals Animals, Newborn Apoptosis/genetics,physiology Brain Injuries/metabolism,pathology Cell Count/methods Cells, Cultured Embryo, Mammalian Gene Expression Regulation, Developmental/physiology Membrane Glycoproteins/deficiency,physiology Mice Mice, Inbred C57BL Mice, Knockout Nerve Tissue Proteins/deficiency,physiology Neurons/classification,physiology Receptors, Nerve Growth Factor/deficiency Retina/cytology,embryology Signal Transduction/physiology Superior Cervical Ganglion/cytology Time Factors Tyrosine 3-Monooxygenase/metabolism
Chemicals
Adaptor Proteins, Vesicular Transport Membrane Glycoproteins Nerve Tissue Proteins Receptors, Nerve Growth Factor TNFRSF16 protein, mouse Tyrosine 3-Monooxygenase sortilin
Authors & Affiliations
15 authors, click to expand affiliations / ORCID
Jansen Pernille
MIND Center, Department of Medical Biochemistry, Ole Worms Allé 1170, Aarhus University, DK-8000 Aarhus C, Denmark.
Giehl Klaus
Nyengaard Jens R
Teng Kenneth
Lioubinski Oleg
Sjoegaard Susanne S
Breiderhoff Tilman
Gotthardt Michael
Lin Fuyu
Eilers Andreas
Petersen Claus M
Lewin Gary R
Hempstead Barbara L
Willnow Thomas E
Nykjaer Anders
Article Info
Journal
Nature neuroscience
Abbr.
Nat Neurosci
ISSN
1097-6256
Published
2007-11-00
Epub
2007-00-14
Pages
1449-57
Language
English
Region
United States
NLM ID
9809671
Subset
IM
Grants
NINDS NIH HHS · NS30687 · United States
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