Literature DB >> 9334423

Neurturin and glial cell line-derived neurotrophic factor receptor-beta (GDNFR-beta), novel proteins related to GDNF and GDNFR-alpha with specific cellular patterns of expression suggesting roles in the developing and adult nervous system and in peripheral organs.

J Widenfalk1, C Nosrat, A Tomac, H Westphal, B Hoffer, L Olson.   

Abstract

Cloning strategies were used to identify a gene termed glial cell line-derived neurotrophic factor receptor-beta (GDNFR-beta) related to GDNFR-alpha. In situ hybridization was then used to map cellular expression of the GDNF-related trophic factor neurturin (NTN) and GDNFR-beta mRNA in developing and adult mice, and comparisons with GDNFR-alpha and RET were made. Neurturin is expressed in postnatal cerebral cortex, striatum, several brainstem areas, and the pineal gland. GDNFR-beta mRNA was more widely expressed in the developing and adult CNS, including cerebral cortex, cerebellum, thalamus, zona incerta, hypothalamus, brainstem, and spinal cord, and in subpopulations of sensory neurons and developing peripheral nerves. NTN colocalized with RET and GDNFR-alpha in ureteric buds of the developing kidney. The circular muscle layer of the developing intestines, smooth muscle of the urether, and developing bronchiolae also expressed NTN. GDNFR-beta was found in myenteric but not submucosal intestinal plexuses. In developing salivary glands NTN had an epithelial expression, whereas GDNFR-beta was expressed in surrounding tissue. Neurturin and GDNFR-beta were present in developing sensory organs. In the gonads, NTN appeared to be expressed in Sertoli cells and in the epithelium of the oviduct, whereas GDNFR-beta was expressed by the germ cell line. Our findings suggest multiple roles for NTN and GDNFR-beta in the developing and adult organism. Although NTN and GDNFR-beta expression patterns are sometimes complementary, this is not always the case, suggesting multiple modi operandi of GDNF and NTN in relation to RET and the two binding proteins, GDNFR-alpha and GDNFR-beta.

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Year:  1997        PMID: 9334423      PMCID: PMC6573771     

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  35 in total

1.  Complementary and overlapping expression of glial cell line-derived neurotrophic factor (GDNF), c-ret proto-oncogene, and GDNF receptor-alpha indicates multiple mechanisms of trophic actions in the adult rat CNS.

Authors:  M Trupp; N Belluardo; H Funakoshi; C F Ibáñez
Journal:  J Neurosci       Date:  1997-05-15       Impact factor: 6.167

2.  Characterization of a multicomponent receptor for GDNF.

Authors:  J J Treanor; L Goodman; F de Sauvage; D M Stone; K T Poulsen; C D Beck; C Gray; M P Armanini; R A Pollock; F Hefti; H S Phillips; A Goddard; M W Moore; A Buj-Bello; A M Davies; N Asai; M Takahashi; R Vandlen; C E Henderson; A Rosenthal
Journal:  Nature       Date:  1996-07-04       Impact factor: 49.962

3.  GDNF signalling through the Ret receptor tyrosine kinase.

Authors:  P Durbec; C V Marcos-Gutierrez; C Kilkenny; M Grigoriou; K Wartiowaara; P Suvanto; D Smith; B Ponder; F Costantini; M Saarma
Journal:  Nature       Date:  1996-06-27       Impact factor: 49.962

4.  Renal and neuronal abnormalities in mice lacking GDNF.

Authors:  M W Moore; R D Klein; I Fariñas; H Sauer; M Armanini; H Phillips; L F Reichardt; A M Ryan; K Carver-Moore; A Rosenthal
Journal:  Nature       Date:  1996-07-04       Impact factor: 49.962

5.  GDNF mRNA in Schwann cells and DRG satellite cells after chronic sciatic nerve injury.

Authors:  H Hammarberg; F Piehl; S Cullheim; J Fjell; T Hökfelt; K Fried
Journal:  Neuroreport       Date:  1996-03-22       Impact factor: 1.837

6.  Glial cell line-derived neurotrophic factor-dependent RET activation can be mediated by two different cell-surface accessory proteins.

Authors:  M Sanicola; C Hession; D Worley; P Carmillo; C Ehrenfels; L Walus; S Robinson; G Jaworski; H Wei; R Tizard; A Whitty; R B Pepinsky; R L Cate
Journal:  Proc Natl Acad Sci U S A       Date:  1997-06-10       Impact factor: 11.205

7.  A GPI-linked protein that interacts with Ret to form a candidate neurturin receptor.

Authors:  R D Klein; D Sherman; W H Ho; D Stone; G L Bennett; B Moffat; R Vandlen; L Simmons; Q Gu; J A Hongo; B Devaux; K Poulsen; M Armanini; C Nozaki; N Asai; A Goddard; H Phillips; C E Henderson; M Takahashi; A Rosenthal
Journal:  Nature       Date:  1997-06-12       Impact factor: 49.962

8.  GDNF-induced activation of the ret protein tyrosine kinase is mediated by GDNFR-alpha, a novel receptor for GDNF.

Authors:  S Jing; D Wen; Y Yu; P L Holst; Y Luo; M Fang; R Tamir; L Antonio; Z Hu; R Cupples; J C Louis; S Hu; B W Altrock; G M Fox
Journal:  Cell       Date:  1996-06-28       Impact factor: 41.582

9.  Embryonic expression of glial cell-line derived neurotrophic factor (GDNF) suggests multiple developmental roles in neural differentiation and epithelial-mesenchymal interactions.

Authors:  H L Hellmich; L Kos; E S Cho; K A Mahon; A Zimmer
Journal:  Mech Dev       Date:  1996-01       Impact factor: 1.882

10.  Germ-line mutations of the RET proto-oncogene in multiple endocrine neoplasia type 2A.

Authors:  L M Mulligan; J B Kwok; C S Healey; M J Elsdon; C Eng; E Gardner; D R Love; S E Mole; J K Moore; L Papi
Journal:  Nature       Date:  1993-06-03       Impact factor: 49.962

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  45 in total

1.  Expansion of mouse sertoli cells on microcarriers.

Authors:  B Shi; S Zhang; Y Wang; Y Zhuang; J Chu; S Zhang; X Shi; J Bi; M Guo
Journal:  Cell Prolif       Date:  2010-06       Impact factor: 6.831

2.  Neurturin protects against 6-hydroxydopamine-induced reductions in evoked dopamine overflow in rat striatum.

Authors:  Wayne A Cass; Laura E Peters
Journal:  Neurochem Int       Date:  2010-07-06       Impact factor: 3.921

3.  New roles for glial cell line-derived neurotrophic factor and neurturin: involvement in hair cycle control.

Authors:  N V Botchkareva; V A Botchkarev; P Welker; M Airaksinen; W Roth; P Suvanto; S Müller-Röver; I M Hadshiew; C Peters; R Paus
Journal:  Am J Pathol       Date:  2000-03       Impact factor: 4.307

4.  The role of connexins in the differentiation of NT2 cells in Sertoli-NT2 cell tissue constructs grown in the rotating wall bioreactor.

Authors:  R Shamekh; D F Cameron; A E Willing; S Saporta
Journal:  Exp Brain Res       Date:  2005-11-19       Impact factor: 1.972

5.  Effects of Sertoli cell-conditioned medium on ventral midbrain neural stem cells: a preliminary report.

Authors:  Rania Shamekh; Samuel Saporta; Don F Cameron; Alison E Willing; Cindy D Sanberg; Karl Johe; P R Sanberg
Journal:  Neurotox Res       Date:  2008 May-Jun       Impact factor: 3.911

Review 6.  Nerve growth factor modulation of the cavernous nerve response to injury.

Authors:  Anthony J Bella; Guiting Lin; Ching-Shwun Lin; Duane R Hickling; Christopher Morash; Tom F Lue
Journal:  J Sex Med       Date:  2009-03       Impact factor: 3.802

7.  Anatomical basis of glial cell line-derived neurotrophic factor expression in the striatum and related basal ganglia during postnatal development of the rat.

Authors:  Tinmarla Frances Oo; Vincent Ries; Jinwhan Cho; Nikolai Kholodilov; Robert E Burke
Journal:  J Comp Neurol       Date:  2005-03-28       Impact factor: 3.215

8.  α1ACT Is Essential for Survival and Early Cerebellar Programming in a Critical Neonatal Window.

Authors:  Xiaofei Du; Cenfu Wei; Daniel Parviz Hejazi Pastor; Eshaan R Rao; Yan Li; Giorgio Grasselli; Jack Godfrey; Ann C Palmenberg; Jorge Andrade; Christian Hansel; Christopher M Gomez
Journal:  Neuron       Date:  2019-03-25       Impact factor: 17.173

9.  Sertoli Cells Avert Neuroinflammation-Induced Cell Death and Improve Motor Function and Striatal Atrophy in Rat Model of Huntington Disease.

Authors:  Houssein Ahmadi; Mahdi Eskandarian Boroujeni; Yousef Sadeghi; Mohammad Amin Abdollahifar; Fariba Khodagholi; Gholam Houssein Meftahi; Mohammadmehdi Hadipour; Amir-Hossein Bayat; Fatemeh Shaerzadeh; Abbas Aliaghaei
Journal:  J Mol Neurosci       Date:  2018-04-21       Impact factor: 3.444

10.  Glial cell line-derived neurotrophic factor requires transforming growth factor-beta for exerting its full neurotrophic potential on peripheral and CNS neurons.

Authors:  K Krieglstein; P Henheik; L Farkas; J Jaszai; D Galter; K Krohn; K Unsicker
Journal:  J Neurosci       Date:  1998-12-01       Impact factor: 6.167

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