Cargando…

A novel NGF mutation clarifies the molecular mechanism and extends the phenotypic spectrum of the HSAN5 neuropathy

BACKGROUND: Nerve growth factor β (NGFβ) and tyrosine kinase receptor type A (TRKA) are a well studied neurotrophin/receptor duo involved in neuronal survival and differentiation. The only previously reported hereditary sensory neuropathy caused by an NGF mutation, c.661C>T (HSAN5), and the patho...

Descripción completa

Detalles Bibliográficos
Autores principales: Carvalho, Ofélia P, Thornton, Gemma K, Hertecant, Joseph, Houlden, Henry, Nicholas, Adeline K, Cox, James J, Rielly, Mary, Al-Gazali, Lihadh, Woods, C Geoffrey
Formato: Texto
Lenguaje:English
Publicado: BMJ Group 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3030776/
https://www.ncbi.nlm.nih.gov/pubmed/20978020
http://dx.doi.org/10.1136/jmg.2010.081455
_version_ 1782197292164448256
author Carvalho, Ofélia P
Thornton, Gemma K
Hertecant, Joseph
Houlden, Henry
Nicholas, Adeline K
Cox, James J
Rielly, Mary
Al-Gazali, Lihadh
Woods, C Geoffrey
author_facet Carvalho, Ofélia P
Thornton, Gemma K
Hertecant, Joseph
Houlden, Henry
Nicholas, Adeline K
Cox, James J
Rielly, Mary
Al-Gazali, Lihadh
Woods, C Geoffrey
author_sort Carvalho, Ofélia P
collection PubMed
description BACKGROUND: Nerve growth factor β (NGFβ) and tyrosine kinase receptor type A (TRKA) are a well studied neurotrophin/receptor duo involved in neuronal survival and differentiation. The only previously reported hereditary sensory neuropathy caused by an NGF mutation, c.661C>T (HSAN5), and the pathology caused by biallelic mutations in the TRKA gene (NTRK1) (HSAN4), share only some clinical features. A consanguineous Arab family, where five of the six children were completely unable to perceive pain, were mentally retarded, did not sweat, could not discriminate temperature, and had a chronic immunodeficiency, is reported here. The condition is linked to a new homozygous mutation in the NGF gene, c.[680C>A]+[681_682delGG]. METHODS: Genetic linkage and standard sequencing techniques were used to identify the causative gene. Using wild-type or mutant over-expression constructs transfected into PC12 and COS-7 cells, the cellular and molecular consequences of the mutations were investigated. RESULTS: The mutant gene produced a precursor protein V232fs that was unable to differentiate PC12 cells. V232fs was not secreted from cells as mature NGFβ. CONCLUSIONS: Both the clinical and cellular data suggest that the c.[680C>A]+[681_682delGG] NGF mutation is a functional null. The HSAN5 phenotype is extended to encompass HSAN4-like characteristics. It is concluded that the HSAN4 and HSAN5 phenotypes are parts of a phenotypic spectrum caused by changes in the NGF/TRKA signalling pathway.
format Text
id pubmed-3030776
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher BMJ Group
record_format MEDLINE/PubMed
spelling pubmed-30307762011-01-31 A novel NGF mutation clarifies the molecular mechanism and extends the phenotypic spectrum of the HSAN5 neuropathy Carvalho, Ofélia P Thornton, Gemma K Hertecant, Joseph Houlden, Henry Nicholas, Adeline K Cox, James J Rielly, Mary Al-Gazali, Lihadh Woods, C Geoffrey J Med Genet Short Report BACKGROUND: Nerve growth factor β (NGFβ) and tyrosine kinase receptor type A (TRKA) are a well studied neurotrophin/receptor duo involved in neuronal survival and differentiation. The only previously reported hereditary sensory neuropathy caused by an NGF mutation, c.661C>T (HSAN5), and the pathology caused by biallelic mutations in the TRKA gene (NTRK1) (HSAN4), share only some clinical features. A consanguineous Arab family, where five of the six children were completely unable to perceive pain, were mentally retarded, did not sweat, could not discriminate temperature, and had a chronic immunodeficiency, is reported here. The condition is linked to a new homozygous mutation in the NGF gene, c.[680C>A]+[681_682delGG]. METHODS: Genetic linkage and standard sequencing techniques were used to identify the causative gene. Using wild-type or mutant over-expression constructs transfected into PC12 and COS-7 cells, the cellular and molecular consequences of the mutations were investigated. RESULTS: The mutant gene produced a precursor protein V232fs that was unable to differentiate PC12 cells. V232fs was not secreted from cells as mature NGFβ. CONCLUSIONS: Both the clinical and cellular data suggest that the c.[680C>A]+[681_682delGG] NGF mutation is a functional null. The HSAN5 phenotype is extended to encompass HSAN4-like characteristics. It is concluded that the HSAN4 and HSAN5 phenotypes are parts of a phenotypic spectrum caused by changes in the NGF/TRKA signalling pathway. BMJ Group 2010-10-26 2011-02 /pmc/articles/PMC3030776/ /pubmed/20978020 http://dx.doi.org/10.1136/jmg.2010.081455 Text en © 2011, Published by the BMJ Publishing Group Limited. For permission to use (where not already granted under a licence) please go to http://group.bmj.com/group/rights-licensing/permissions. This is an open-access article distributed under the terms of the Creative Commons Attribution Non-commercial License, which permits use, distribution, and reproduction in any medium, provided the original work is properly cited, the use is non commercial and is otherwise in compliance with the license. See: http://creativecommons.org/licenses/by-nc/2.0/ and http://creativecommons.org/licenses/by-nc/2.0/legalcode.
spellingShingle Short Report
Carvalho, Ofélia P
Thornton, Gemma K
Hertecant, Joseph
Houlden, Henry
Nicholas, Adeline K
Cox, James J
Rielly, Mary
Al-Gazali, Lihadh
Woods, C Geoffrey
A novel NGF mutation clarifies the molecular mechanism and extends the phenotypic spectrum of the HSAN5 neuropathy
title A novel NGF mutation clarifies the molecular mechanism and extends the phenotypic spectrum of the HSAN5 neuropathy
title_full A novel NGF mutation clarifies the molecular mechanism and extends the phenotypic spectrum of the HSAN5 neuropathy
title_fullStr A novel NGF mutation clarifies the molecular mechanism and extends the phenotypic spectrum of the HSAN5 neuropathy
title_full_unstemmed A novel NGF mutation clarifies the molecular mechanism and extends the phenotypic spectrum of the HSAN5 neuropathy
title_short A novel NGF mutation clarifies the molecular mechanism and extends the phenotypic spectrum of the HSAN5 neuropathy
title_sort novel ngf mutation clarifies the molecular mechanism and extends the phenotypic spectrum of the hsan5 neuropathy
topic Short Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3030776/
https://www.ncbi.nlm.nih.gov/pubmed/20978020
http://dx.doi.org/10.1136/jmg.2010.081455
work_keys_str_mv AT carvalhoofeliap anovelngfmutationclarifiesthemolecularmechanismandextendsthephenotypicspectrumofthehsan5neuropathy
AT thorntongemmak anovelngfmutationclarifiesthemolecularmechanismandextendsthephenotypicspectrumofthehsan5neuropathy
AT hertecantjoseph anovelngfmutationclarifiesthemolecularmechanismandextendsthephenotypicspectrumofthehsan5neuropathy
AT houldenhenry anovelngfmutationclarifiesthemolecularmechanismandextendsthephenotypicspectrumofthehsan5neuropathy
AT nicholasadelinek anovelngfmutationclarifiesthemolecularmechanismandextendsthephenotypicspectrumofthehsan5neuropathy
AT coxjamesj anovelngfmutationclarifiesthemolecularmechanismandextendsthephenotypicspectrumofthehsan5neuropathy
AT riellymary anovelngfmutationclarifiesthemolecularmechanismandextendsthephenotypicspectrumofthehsan5neuropathy
AT algazalilihadh anovelngfmutationclarifiesthemolecularmechanismandextendsthephenotypicspectrumofthehsan5neuropathy
AT woodscgeoffrey anovelngfmutationclarifiesthemolecularmechanismandextendsthephenotypicspectrumofthehsan5neuropathy
AT carvalhoofeliap novelngfmutationclarifiesthemolecularmechanismandextendsthephenotypicspectrumofthehsan5neuropathy
AT thorntongemmak novelngfmutationclarifiesthemolecularmechanismandextendsthephenotypicspectrumofthehsan5neuropathy
AT hertecantjoseph novelngfmutationclarifiesthemolecularmechanismandextendsthephenotypicspectrumofthehsan5neuropathy
AT houldenhenry novelngfmutationclarifiesthemolecularmechanismandextendsthephenotypicspectrumofthehsan5neuropathy
AT nicholasadelinek novelngfmutationclarifiesthemolecularmechanismandextendsthephenotypicspectrumofthehsan5neuropathy
AT coxjamesj novelngfmutationclarifiesthemolecularmechanismandextendsthephenotypicspectrumofthehsan5neuropathy
AT riellymary novelngfmutationclarifiesthemolecularmechanismandextendsthephenotypicspectrumofthehsan5neuropathy
AT algazalilihadh novelngfmutationclarifiesthemolecularmechanismandextendsthephenotypicspectrumofthehsan5neuropathy
AT woodscgeoffrey novelngfmutationclarifiesthemolecularmechanismandextendsthephenotypicspectrumofthehsan5neuropathy