Tracing Myelin Protein Zero (P0) <it>in vivo </it>by construction of P0-GFP fusion proteins

<p>Abstract</p> <p>Background</p> <p>Mutations in P0, the major protein of the myelin sheath in peripheral nerves, cause the inherited peripheral neuropathies Charcot-Marie-Tooth disease type 1B (CMT1B), Dejerine-Sottas syndrome (DSS) and congenital hypomyelination (CH)...

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Main Authors: Van Broeckhoven Christine, Nelis Eva, Fuchs Christina, Oezbey Sevinc, Ekici Arif B, Schachner Melitta, Rautenstrauss Bernd
Format: Article
Language:English
Published: BMC 2002-11-01
Series:BMC Cell Biology
Online Access:http://www.biomedcentral.com/1471-2121/3/29
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spelling doaj-f149f5b19a5d4a818a968a53627b0cc72020-11-25T01:53:40ZengBMCBMC Cell Biology1471-21212002-11-01312910.1186/1471-2121-3-29Tracing Myelin Protein Zero (P0) <it>in vivo </it>by construction of P0-GFP fusion proteinsVan Broeckhoven ChristineNelis EvaFuchs ChristinaOezbey SevincEkici Arif BSchachner MelittaRautenstrauss Bernd<p>Abstract</p> <p>Background</p> <p>Mutations in P0, the major protein of the myelin sheath in peripheral nerves, cause the inherited peripheral neuropathies Charcot-Marie-Tooth disease type 1B (CMT1B), Dejerine-Sottas syndrome (DSS) and congenital hypomyelination (CH). We reported earlier a de novo insertional mutation c.662_663GC (Ala221fs) in a DSS patient. The c.662_663GC insertion results in a frame shift mutation Ala221fs altering the C-terminal amino acid sequence. The adhesion-relevant intracellular RSTK domain is replaced by a sequence similar to Na+/K+ ATPase. To further clarify the molecular disease mechanisms in this sporadic patient we constructed wild type P0 and the c.662_663GC mutant expression cassettes by site-specific mutagenesis and transfected the constructs into insect cells (S2, High5). To trace the effects in live cells, green fluorescent protein (GFP) has been added to the carboxyterminus of the wild type and mutated P0 protein.</p> <p>Results</p> <p>In contrast to the membrane-localized wild type P0-GFP the Ala221fs P0-GFP protein was detectable almost only in the cytoplasm of the cells, and a complete loss of adhesion function was observed.</p> <p>Conclusions</p> <p>The present study provides evidence that GFP is a versatile tool to trace <it>in vivo </it>effects of P0 and its mutations. Not only a loss of adhesion function as a result of the loss of the RSTK domain, but also altered intracellular trafficking indicated by a loss of membrane insertion are possible consequences of the Ala221fs mutation.</p> http://www.biomedcentral.com/1471-2121/3/29
collection DOAJ
language English
format Article
sources DOAJ
author Van Broeckhoven Christine
Nelis Eva
Fuchs Christina
Oezbey Sevinc
Ekici Arif B
Schachner Melitta
Rautenstrauss Bernd
spellingShingle Van Broeckhoven Christine
Nelis Eva
Fuchs Christina
Oezbey Sevinc
Ekici Arif B
Schachner Melitta
Rautenstrauss Bernd
Tracing Myelin Protein Zero (P0) <it>in vivo </it>by construction of P0-GFP fusion proteins
BMC Cell Biology
author_facet Van Broeckhoven Christine
Nelis Eva
Fuchs Christina
Oezbey Sevinc
Ekici Arif B
Schachner Melitta
Rautenstrauss Bernd
author_sort Van Broeckhoven Christine
title Tracing Myelin Protein Zero (P0) <it>in vivo </it>by construction of P0-GFP fusion proteins
title_short Tracing Myelin Protein Zero (P0) <it>in vivo </it>by construction of P0-GFP fusion proteins
title_full Tracing Myelin Protein Zero (P0) <it>in vivo </it>by construction of P0-GFP fusion proteins
title_fullStr Tracing Myelin Protein Zero (P0) <it>in vivo </it>by construction of P0-GFP fusion proteins
title_full_unstemmed Tracing Myelin Protein Zero (P0) <it>in vivo </it>by construction of P0-GFP fusion proteins
title_sort tracing myelin protein zero (p0) <it>in vivo </it>by construction of p0-gfp fusion proteins
publisher BMC
series BMC Cell Biology
issn 1471-2121
publishDate 2002-11-01
description <p>Abstract</p> <p>Background</p> <p>Mutations in P0, the major protein of the myelin sheath in peripheral nerves, cause the inherited peripheral neuropathies Charcot-Marie-Tooth disease type 1B (CMT1B), Dejerine-Sottas syndrome (DSS) and congenital hypomyelination (CH). We reported earlier a de novo insertional mutation c.662_663GC (Ala221fs) in a DSS patient. The c.662_663GC insertion results in a frame shift mutation Ala221fs altering the C-terminal amino acid sequence. The adhesion-relevant intracellular RSTK domain is replaced by a sequence similar to Na+/K+ ATPase. To further clarify the molecular disease mechanisms in this sporadic patient we constructed wild type P0 and the c.662_663GC mutant expression cassettes by site-specific mutagenesis and transfected the constructs into insect cells (S2, High5). To trace the effects in live cells, green fluorescent protein (GFP) has been added to the carboxyterminus of the wild type and mutated P0 protein.</p> <p>Results</p> <p>In contrast to the membrane-localized wild type P0-GFP the Ala221fs P0-GFP protein was detectable almost only in the cytoplasm of the cells, and a complete loss of adhesion function was observed.</p> <p>Conclusions</p> <p>The present study provides evidence that GFP is a versatile tool to trace <it>in vivo </it>effects of P0 and its mutations. Not only a loss of adhesion function as a result of the loss of the RSTK domain, but also altered intracellular trafficking indicated by a loss of membrane insertion are possible consequences of the Ala221fs mutation.</p>
url http://www.biomedcentral.com/1471-2121/3/29
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