Study of GDNF-Family Receptor Alpha 2 And Inhibitory Activity of GDNF-Family Receptor Alpha 2b (GFRα2b) Isoform

The glial cell-line derived neurotrophic factor (GDNF) and neurturin (NTN) belong to a structurally related family of neurotrophic factors. NTN exerts its effect through a multi-component receptor system consisting of the GDNF family receptor alpha 2 (GFRα2), proto-oncogene RET and/or NCAM. GFRα2 i...

Full description

Bibliographic Details
Main Authors: Yoong, Li Foong, Too, Heng-Phon
Format: Article
Language:English
Published: 2005
Subjects:
Online Access:http://hdl.handle.net/1721.1/30392
_version_ 1811068319910854656
author Yoong, Li Foong
Too, Heng-Phon
author_facet Yoong, Li Foong
Too, Heng-Phon
author_sort Yoong, Li Foong
collection MIT
description The glial cell-line derived neurotrophic factor (GDNF) and neurturin (NTN) belong to a structurally related family of neurotrophic factors. NTN exerts its effect through a multi-component receptor system consisting of the GDNF family receptor alpha 2 (GFRα2), proto-oncogene RET and/or NCAM. GFRα2 is spliced into at least three isoforms, GFRα2a, GFRα2b and GFRα2c. The present study investigated the expression and functional differences of GFRα2 isoforms. These receptor isoforms are differentially expressed in specific human brain regions. Using Neuro2A model, GDNF and NTN promote neurite outgrowth via GFRα2a and GFRα2c, but not GFRα2b. These GFRα2 isoforms regulate different early response genes when stimulated with GDNF and NTN. Interestingly, using co-expression models, GFRα2b inhibits ligand induced neurites outgrowth of GFRα2a and GFRα2c, and also the related receptor, GFRα1a. More intriguingly, ligands activated GFRα2b was also able to attenuate neurite extension induced by an unrelated stimulation using retinoic acid. MAPK activation induced by GDNF was not attenuated by GFRα2b in a co-expression model, while the early response genes expression profile (up-regulation of FosB) was similar to that induced by GFRα2b alone. This study suggest that GFRα2b is not merely a dominant negative isoform, but signals through a yet to be determined mechanism to antagonize and inhibit neuritogenesis. Together, these data suggest a new paradigm for the regulation of growth factor signaling and neurite outgrowth via an inhibitory splice variant of the receptor.
first_indexed 2024-09-23T07:54:24Z
format Article
id mit-1721.1/30392
institution Massachusetts Institute of Technology
language English
last_indexed 2024-09-23T07:54:24Z
publishDate 2005
record_format dspace
spelling mit-1721.1/303922019-04-09T15:25:29Z Study of GDNF-Family Receptor Alpha 2 And Inhibitory Activity of GDNF-Family Receptor Alpha 2b (GFRα2b) Isoform Yoong, Li Foong Too, Heng-Phon GDNF NTN GFR(alpha)2 neurites outgrowth The glial cell-line derived neurotrophic factor (GDNF) and neurturin (NTN) belong to a structurally related family of neurotrophic factors. NTN exerts its effect through a multi-component receptor system consisting of the GDNF family receptor alpha 2 (GFRα2), proto-oncogene RET and/or NCAM. GFRα2 is spliced into at least three isoforms, GFRα2a, GFRα2b and GFRα2c. The present study investigated the expression and functional differences of GFRα2 isoforms. These receptor isoforms are differentially expressed in specific human brain regions. Using Neuro2A model, GDNF and NTN promote neurite outgrowth via GFRα2a and GFRα2c, but not GFRα2b. These GFRα2 isoforms regulate different early response genes when stimulated with GDNF and NTN. Interestingly, using co-expression models, GFRα2b inhibits ligand induced neurites outgrowth of GFRα2a and GFRα2c, and also the related receptor, GFRα1a. More intriguingly, ligands activated GFRα2b was also able to attenuate neurite extension induced by an unrelated stimulation using retinoic acid. MAPK activation induced by GDNF was not attenuated by GFRα2b in a co-expression model, while the early response genes expression profile (up-regulation of FosB) was similar to that induced by GFRα2b alone. This study suggest that GFRα2b is not merely a dominant negative isoform, but signals through a yet to be determined mechanism to antagonize and inhibit neuritogenesis. Together, these data suggest a new paradigm for the regulation of growth factor signaling and neurite outgrowth via an inhibitory splice variant of the receptor. Singapore-MIT Alliance (SMA) 2005-12-16T15:02:14Z 2005-12-16T15:02:14Z 2006-01 Article http://hdl.handle.net/1721.1/30392 en Molecular Engineering of Biological and Chemical Systems (MEBCS) 275240 bytes application/pdf application/pdf
spellingShingle GDNF
NTN
GFR(alpha)2
neurites outgrowth
Yoong, Li Foong
Too, Heng-Phon
Study of GDNF-Family Receptor Alpha 2 And Inhibitory Activity of GDNF-Family Receptor Alpha 2b (GFRα2b) Isoform
title Study of GDNF-Family Receptor Alpha 2 And Inhibitory Activity of GDNF-Family Receptor Alpha 2b (GFRα2b) Isoform
title_full Study of GDNF-Family Receptor Alpha 2 And Inhibitory Activity of GDNF-Family Receptor Alpha 2b (GFRα2b) Isoform
title_fullStr Study of GDNF-Family Receptor Alpha 2 And Inhibitory Activity of GDNF-Family Receptor Alpha 2b (GFRα2b) Isoform
title_full_unstemmed Study of GDNF-Family Receptor Alpha 2 And Inhibitory Activity of GDNF-Family Receptor Alpha 2b (GFRα2b) Isoform
title_short Study of GDNF-Family Receptor Alpha 2 And Inhibitory Activity of GDNF-Family Receptor Alpha 2b (GFRα2b) Isoform
title_sort study of gdnf family receptor alpha 2 and inhibitory activity of gdnf family receptor alpha 2b gfrα2b isoform
topic GDNF
NTN
GFR(alpha)2
neurites outgrowth
url http://hdl.handle.net/1721.1/30392
work_keys_str_mv AT yoonglifoong studyofgdnffamilyreceptoralpha2andinhibitoryactivityofgdnffamilyreceptoralpha2bgfra2bisoform
AT toohengphon studyofgdnffamilyreceptoralpha2andinhibitoryactivityofgdnffamilyreceptoralpha2bgfra2bisoform